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1.


    Вальков, Валерий Владимирович.
    Сосуществование сверхпроводимости и антиферромагнетизма в тяжелофермионных интерметаллидах / В. В. Вальков, А. О. Злотников // Теор. и мат. физика. - 2013. - Т. 174, № 3. - С. 484-503DOI 10.4213/tmf8378
Аннотация: В рамках эффективного гамильтониана для периодической модели Андерсона при использовании двухвременных запаздывающих функций Грина изучены условия реализации фазы сосуществования сверхпроводимости и антиферромагнетизма. Такая фаза экспериментально наблюдается в редкоземельных интерметаллидах с тяжелыми фермионами при приложении внешнего давления. В выбранной модели при наличии дальнего антиферромагнитного упорядочения куперовская неустойчивость индуцируется в результате совместного влияния сверхобменного взаимодействия в подсистеме локализованных электронов и гибридизации между двумя группами электронов. Приложение внешнего давления вызывает увеличение энергии локализованного уровня, сопровождающееся в определенной области фазовой диаграммы резким разрушением дальнего антиферромагнитного упорядочения. В точке разрушения сверхпроводящий параметр порядка обладает максимальным значением. Показано, что уменьшение намагниченности антиферромагнитной подрешетки с ростом давления вызывает значительное увеличение массы фермиевских квазичастиц, а в критической точке происходит изменение знака носителей тока. Полученные результаты на качественном уровне хорошо согласуются с экспериментальными данными для тяжелофермионного интерметаллида CeRhIn5

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Переводная версия Coexistence of superconductivity and antiferromagnetism in heavy-fermion intermetallides. - [Б. м. : б. и.]

Держатели документа:
Институт физики им. Л.В. Киренского СО РАН

Доп.точки доступа:
Злотников, Антон Олегович; Zlotnikov, A. O.; Val'kov V.V.
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2.


   
    Особенности спектра тяжелых фермионов в скошенной фазе антиферромагнитных интерметаллидов [Текст] / В. В. Вальков, Д. М. Дзебисашвили // Теоретическая и математическая физика. - 2010. - Т. 162, № 1. - С. 125-149, DOI 10.4213/tmf6460 . - ISSN 0564-6162. - ISSN 2305-3135
   Перевод заглавия: Properties of the heavy-fermion spectrum in the canted phase of antiferromagnetic intermetallides
Рубрики:

Кл.слова (ненормированные):
периодическая модель Андерсона -- тяжелые фермионы -- антиферромагнетизм -- скошенная фаза
Аннотация: Изучено влияние индуцированного магнитным полем скоса магнитных подрешеток на энергетическую структуру тяжелофермионных квазичастиц в интерметаллидах с антиферромагнитным типом упорядочения. Исследования выполнены в рамках эффективного гамильтониана периодической модели Андерсона в режиме сильных электронных корреляций. В результате учета виртуальных забросов в высокоэнергетические двоечные состояния этот гамильтониан включает обменные взаимодействия между спиновыми моментами f-ионов, а также s–f-обменную связь между двумя подсистемами. Для неколлинеарной геометрии задачи введено унитарное преобразование, позволившее свести уравнение восьмой степени для спектра тяжелых фермионов к двум уравнениям четвертой степени. Показано, что характер квазиимпульсной зависимости энергии тяжелых фермионов претерпевает качественные изменения при переходе от антиферромагнитной фазы к фазе со значительным углом скоса, возникающим при наложении внешнего магнитного поля.

РИНЦ
Держатели документа:
Институт физики им. Л. В. Киренского СО РАН
Сибирский федеральный университет

Доп.точки доступа:
Вальков, Валерий Владимирович; Дзебисашвили, Дмитрий Михайлович
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3.


   
    The spin fluctuation processes in the problem of the s-wave super?conducting phase of the heavy fermion intermetallides / V. V. Val'kov, D. M. Dzebisashvili // 18th International Conference on Magnetism (ICM-2009). - 2009. - Ст. Mo-A-5.1-03


Доп.точки доступа:
Val'kov, V.V.; Dzebisashvili, D.M.; International Conference on Magnetism(18 ; 2009 ; July 26-31 ; Karlsruhe, Germany)
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4.


   
    The reason for implementation of the d–wave rather than s–wave pairing in cuprate superconductors / V. V. Val'kov [et al.] // VI Euro-Asian Symposium "Trends in MAGnetism" (EASTMAG-2016) : abstracts / ed.: O. A. Maksimova, R. D. Ivantsov. - Krasnoyarsk : KIP RAS SB, 2016. - Ст. I2.2. - P. 122. - References: 6. - The work was supported by the RFBR, grant № 16-02-00073, 16-02-00304 . - ISBN 978-5-904603-06-9
Кл.слова (ненормированные):
cuprate superconductors -- spin-fermion model -- Coulomb repulsion


Доп.точки доступа:
Val'kov, V. V.; Вальков, Валерий Владимирович; Dzebisashvili, D. M.; Дзебисашвили, Дмитрий Михайлович; Korovushkin, M. M.; Коровушкин, Максим Михайлович; Barabanov, A. F.; Euro-Asian Symposium "Trends in MAGnetism"(6 ; 2016 ; Aug. ; 15-19 ; Krasnoyarsk); "Trends in MAGnetism", Euro-Asian Symposium(6 ; 2016 ; Aug. ; 15-19 ; Krasnoyarsk); Институт физики им. Л.В. Киренского Сибирского отделения РАН

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5.


    Val'kov, V. V.
    The influence of spin and charge fluctuations on the coexistence phase of superconductivity and antiferromagnetism in heavy-fermion Ce-based compounds / V. V. Val'kov, A. O. Zlotnikov // VI Euro-Asian Symposium "Trends in MAGnetism" (EASTMAG-2016) : abstracts / ed.: O. A. Maksimova, R. D. Ivantsov. - Krasnoyarsk : KIP RAS SB, 2016. - Ст. O2.3. - P. 136. - References: 2. - This study was funded by the Program of SB RAS 0358-2015-0002 and RFBR project No. 16-02-00073-a. A.O.Z. is grateful for support of the Grant of the President of the Russian Federation SP-1370.2015.5. . - ISBN 978-5-904603-06-9
Кл.слова (ненормированные):
heavy fermions -- antiferromagnetism -- superconductivity -- Ginzburg-Landau theory


Доп.точки доступа:
Zlotnikov, A. O.; Злотников, Антон Олегович; Вальков, Валерий Владимирович; Euro-Asian Symposium "Trends in MAGnetism"(6 ; 2016 ; Aug. ; 15-19 ; Krasnoyarsk); "Trends in MAGnetism", Euro-Asian Symposium(6 ; 2016 ; Aug. ; 15-19 ; Krasnoyarsk); Институт физики им. Л.В. Киренского Сибирского отделения РАН

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6.


    Fedoseev, A. D.
    The edge states properties of the topological insulator with fermion path nonanalyticity points located at the edge / A. D. Fedoseev // J. Phys.: Condens. Matter. - 2020. - Vol. 32, Is. 21. - Ст. 215301, DOI 10.1088/1361-648X/ab73a9. - Cited References: 46. - The author thanks V V Val'kov and M M Korovushkin for the fruitful discussions and valuable remarks. The reported study was funded by the RAS Presidium program for fundamental research No. 32 'Nanostructures: physics, chemistry, biology and technology fundamentals', the Russian Foundation for Basic Research (project nos. 19-02-00348, 18-32-00443), Government of Krasnoyarsk Territory, Krasnoyarsk Regional Fund of Science to the research projects: 'Manifestation of Coulomb interactions and effects of restricted geometry in properties of topological edge states of nanostructures with spin–orbit coupling' (No. 18-42-243017), Council of the President of the Russian Federation for Support of Young Scientists and Leading Scientific Schools (project no. MK-3722.2018.2) . - ISSN 0953-8984
Кл.слова (ненормированные):
Topological insulator -- Edge states -- Electron transport
Аннотация: The edge states properties of a finite-size 2D topological insulator (TI) with the open boundary conditions in both directions are studied. It is shown that fermion path nonanalyticity points appearing on the edge of finite-size TI cause a nonuniform edge state distribution along the TI edge. The character of this distribution depends substantially on the edge state's energy position in the bulk band gap. The edge state with the energy in the middle of the gap tends to be located in the corners between two nonparallel edges of the system, while the edge states with the energy close to the bulk band edge avoid the corners. The monotonic transition from one space distribution of the edge state wave function to another along the edge state's band is observed. The mentioned edge state's structure leads to the nonlinear current-voltage characteristic of the square-shaped TI with contacts connected with the corners of the device. It opens the possibility to control the current with the gate voltage and is useful for construction the nano-size devices. For the edge states with energy in the middle of a bulk gap, the vortex structure of the probability flux located near corners is found.

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Держатели документа:
Kirensky Institute of Physics, Federal Research Center Ksc Sb Ras, Akademgorodok 50/38, Krasnoyarsk, 660036, Russian Federation

Доп.точки доступа:
Федосеев, Александр Дмитриевич
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7.


   
    Stability of the d-wave pairing with respect to the intersite Coulomb repulsion in cuprate superconductors / V. V. Val'kov [et al.] // J. Magn. Magn. Mater. - 2017. - Vol. 440. - P. 123-126, DOI 10.1016/j.jmmm.2016.12.090. - Cited References: 23. - The work was supported by the Siberian Branch of Russian Academy of Sciences (project no. 0358-2015-0002, Complex Program II.2P), the Russian Foundation for Basic Research (RFBR) and partly by the Government of Krasnoyarsk Region and the Krasnoyarsk Region Science and Technology Support Fund (projects nos. 16-42-240435 and 16-42-243057). The work of A.F.B. was funded by RFBR (project no. 16-02-00304). The work of M.M.K. was supported by grant of the President of the Russian Federation (project MK-1398.2017.2). . - ISSN 0304-8853
РУБ Materials Science, Multidisciplinary + Physics, Condensed Matter
Рубрики:
HUBBARD-MODEL
   EXCITATIONS

Кл.слова (ненормированные):
Cuprate superconductors -- Spin-fermion model -- Intersite Coulomb repulsion
Аннотация: Within the spin-fermion model for cuprate superconductors, the influence of the intersite Coulomb interactions V2 and V′2V′2 between holes located at the next-nearest-neighbor oxygen ions of CuO2 plane on the implementation of the dx2−y2dx2−y2-wave pairing is studied. It is shown that d-wave pairing can be suppressed only for unphysically large values of V2 and V′2V′2.
В рамках спин-фермионной модели для купратных сверхпроводников изучено влияние межузельных кулоновских отталкиваний V2 и V2' между дырками, находящимися на следующих за ближайшими ионах кислорода CuO2-плоскости, на реализацию сверхпроводящего dx2y2-спаривания. Показано, что d-спаривание подавляется только при нефизически больших значениях параметров V2 и V2'.

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Доп.точки доступа:
Val'kov, V. V.; Вальков, Валерий Владимирович; Dzebisashvili, D. M.; Дзебисашвили, Дмитрий Михайлович; Korovushkin, M. M.; Коровушкин, Максим Михайлович; Barabanov, A. F.; Euro-Asian Symposium "Trends in MAGnetism"(6 ; 2016 ; Aug. ; 15-19 ; Krasnoyarsk); "Trends in MAGnetism", Euro-Asian Symposium(6 ; 2016 ; Aug. ; 15-19 ; Krasnoyarsk); Институт физики им. Л.В. Киренского Сибирского отделения РАН
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8.


    Val'kov, V. V.
    Spin-polaron nature of fermion quasiparticles and their d-wave pairing in cuprate superconductors / V. V. Val’kov, D. M. Dzebisashvili, A. F. Barabanov // JETP Letters. - 2016. - Vol. 104, Is. 10. - P. 730-741, DOI 10.1134/S002136401622015X. - Cited References: 52 . - ISSN 0021-3640
Аннотация: In the framework of the spin-fermion model, to which the Emery model is reduced in the limit of strong electron correlations, it is shown that the fermion quasiparticles in cuprate high-Tcsuperconductors (HTSCs) arise under a strong effect of exchange coupling between oxygen holes and spins of copper ions. This underlies the spin-polaron nature of fermion quasiparticles in cuprate HTSCs. The Cooper instability with respect to the d-wave symmetry of the order parameter is revealed for an ensemble of such quasiparticles. For the normal phase, the spin-polaron concept allows us to reproduce the fine details in the evolution of the Fermi surface with the changes in the doping level x observed in experiment for La2-xSrxCuO4. The calculated T–x phase diagram correlates well with the available experimental data for cuprate HTSCs. © 2016, Pleiades Publishing, Inc. All Right Reserved.

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Публикация на русском языке Вальков, Валерий Владимирович. Спин-поляронная природа фермиевских квазичастиц и их d-волновое спаривание в купратных сверхпроводниках [Текст] / В. В. Вальков, Д. М. Дзебисашвили, А. Ф. Барабанов // Письма в Журн. эксперим. и теор. физ. : Наука, 2016. - Т. 104 Вып. 9-10. - С. 745-757

Держатели документа:
Kirensky Institute of Physics, Siberian Branch, Russian Academy of Sciences, Akademgorodok, Krasnoyarsk, Russian Federation
Institute for High Pressure Physics, Russian Academy of Sciences, Troitsk, Moscow, Russian Federation

Доп.точки доступа:
Dzebisashvili, D. M.; Дзебисашвили, Дмитрий Михайлович; Barabanov, A. F.; Вальков, Валерий Владимирович
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9.


    Val'kov, V. V.
    Spin-Fluctuation Renormalization of the Temperature of a Superconducting s-Phase in Rare-Earth Intermetallides / V. V. Val'kov, D. M. Dzebisashvili // J. Exp. Theor. Phys. - 2008. - Vol. 107, Is. 4. - P. 679-691, DOI 10.1134/S1063776108100166. - Cited References: 34. - This study was supported in part by the Russian Foundation for Basic Research ( project no. 07-02-00226), the Department of Physic of the Russian Academy of Sciences ( within the program "Strongly Correlated Electrons in Semiconductors, Superconductors, and Magnetic Materials"), and the Siberian Branch of the Russian Academy of Sciences ( integration project no. 3.4). . - ISSN 1063-7761
РУБ Physics, Multidisciplinary
Рубрики:
HEAVY-FERMION SUPERCONDUCTORS
   PERIODIC ANDERSON MODEL

   WAVE SUPERCONDUCTIVITY

   PERTURBATION-THEORY

   MECHANISM

   VALENCE

   SYSTEMS

   LATTICE

   STATE

Кл.слова (ненормированные):
Differential equations -- Electric conductivity -- Green's function -- Numerical analysis -- Rare earth elements -- Spin dynamics -- Spin fluctuations -- Anomalous components -- Critical temperatures -- Experimental datums -- Infinite systems -- Numerical calculations -- Order parameters -- Periodic Anderson models -- Renormalization -- S-phase -- Skutterudite -- Strong electron correlations -- Sub systems -- Superconducting states -- Superconductivity
Аннотация: A theory of the superconducting state with s-type symmetry of the order parameter ( the transition to this state was observed in recently discovered heavy-fermion skutterudite LaFe(4)P(12)) is developed using the periodic Anderson model in the limit of strong electron correlations. Exact representations of Green's functions of the superconducting phase via the normal and anomalous components of the mass and strength operators are obtained. It is shown that an important role in the description of this superconducting phase is played by the anomalous components of the strength operator, which reflect spin-fluctuation processes in the localized subsystem. These components are calculated in the one-loop approximation using the solution of an infinite system of integral equations of self-consistency for the superconducting phase. Numerical calculations show that allowance for the process of scattering on spin fluctuations leads to renormalization of the critical temperature and provides agreement with the experimental data.

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Держатели документа:
[Val'kov, V. V.
Dzebisashvili, D. M.] Russian Acad Sci, LV Kirensky Phys Inst, Siberian Branch, Krasnoyarsk 660036, Russia
[Val'kov, V. V.
Dzebisashvili, D. M.] Siberian Fed Univ, Krasnoyarsk 660041, Russia
[Val'kov, V. V.] Siberian State Aerosp Univ, Krasnoyarsk 660014, Russia
ИФ СО РАН
Kirensky Institute of Physics, Siberian Branch, Russian Academy of Sciences, Krasnoyarsk 660036, Russian Federation
Siberian Federal University, Krasnoyarsk 660041, Russian Federation
Siberian State Aerospace University, Krasnoyarsk 660014, Russian Federation

Доп.точки доступа:
Dzebisashvili, D. M.; Дзебисашвили, Дмитрий Михайлович; Вальков, Валерий Владимирович
}
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10.


    Val'kov, V. V.
    Spin wave theory of heavy-fermion antiferromagnets in the framework of the periodic anderson model / V. V. Val'kov, A. O. Zlotnikov // Spin Waves 2015, Int. Symp. : abstracts. - СПб., 2015
   Перевод заглавия: Спин-волновая теория тяжелофермионных антиферромагнетиков в рамках периодической модели Андерсона

Материалы конференции

Доп.точки доступа:
Zlotnikov, A. O.; Злотников, Антон Олегович; Вальков, Валерий Владимирович; "Spin Waves", International Simposium(2015 ; Jun. ; 7-13 ; Saint Petersburg); Физико-технический институт им. А.Ф. Иоффе РАН
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11.


   
    Spin fluctuation processes in the problem of s-wave superconducting phase of the heavy-fermion intermetallides / V. V. Val'kov, D. M. Dzebisashvili // J. Phys. Conf. Ser. - 2010. - Vol. 200, Is. SECTION 1, DOI 10.1088/1742-6596/200/1/012030 . - ISSN 1742-6588
Кл.слова (ненормированные):
Anomalous component -- Critical points -- Critical temperatures -- Heavy-fermion -- Hubbard operators -- Kinematic mechanism -- One-loop approximation -- Periodic Anderson model -- Self-consistent equations -- Skutterudites -- Strong electron correlations -- Superconducting phase -- Superconducting phase transitions -- Green's function -- Mathematical operators -- Phase diagrams -- Shear waves -- Spin fluctuations -- Superconductivity -- Phase transitions
Аннотация: In the framework of the periodic Anderson model in the limit of strong electron correlations a theory of s-wave superconductivity (this phase has been recently discovered in the skutterudite LaFe4P12) has been developed. The theory is based on kinematic mechanism, provided that the spin fluctuation processes (SFP) are taken into account.To obtain the self-consistent equations for the superconducting phase the diagram technique for Hubbard operators has been used. The exact representations of normal and anomalous Green's functions in terms of normal and anomalous components of mass and strength operators have been obtained. A set of integral equations for superconducting phase was deduced with the assumption that SFP have been accounted for. In the solution of these equations normal and anomalous components of the mass and strength operators have been calculated in the one-loop approximation. Computation has revealed that SFP result in substantial decreasing of critical temperature Tc and shifting the concentration critical point of the superconducting phase transition. © 2010 IOP Publishing Ltd.

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Держатели документа:
L.V.Kirensky Institute of Physics, SB RAS, Krasnoyarsk, Russian Federation
Siberian Federal University, Krasnoyarsk, Russian Federation

Доп.точки доступа:
Val'kov, V. V.; Вальков, Валерий Владимирович; Dzebisashvili, D. M.; Дзебисашвили, Дмитрий Михайлович
}
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12.


   
    Publisher Correction: Multiple fermion scattering in the weakly coupled spin-chain compound YbAlO3 (Nature Communications, (2021), 12, 1, (3599), 10.1038/s41467-021-23585-z) / S. E. Nikitin, S. Nishimoto, Y. Fan [et al.] // Nat. Commun. - 2021. - Vol. 12, Is. 1. - Ст. 4428, DOI 10.1038/s41467-021-24744-y . - ISSN 2041-1723
Аннотация: The original version of this Article contained an error in ref. 20, which was incorrectly given with the wrong title as: “Agrapidis, C. E., van den Brink, J. & Nishimoto, S. Ground state and low-energy excitations of the Kitaev-Heisenberg two-leg ladder. Phys. Rev. B 99, 224423 (2019)”. The correct form of ref. 20 is: “Agrapidis, C. E., van den Brink, J. & Nishimoto, S. Field-induced incommensurate ordering in Heisenberg chains coupled by Ising interaction: model for ytterbium aluminum perovskite YbAlO3. Phys. Rev. B 99, 224423 (2019)”. This has been corrected in the PDF and HTML versions of the Article.

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Держатели документа:
Max Planck Institute for Chemical Physics of Solids, Dresden, Germany
Institut fur Festkorper- und Materialphysik, Technische Universitat Dresden, Dresden, Germany
Department of Physics, Technical University Dresden, Dresden, Germany
Institute for Theoretical Solid State Physics, IFW Dresden, Dresden, Germany
Department of Physics and Beijing Key Laboratory of Opto-Electronic Functional Materials and Micro-Nano Devices, Renmin University of China, Beijing, China
Beijing National Laboratory for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences, Beijing, China
Tsung-Dao Lee Institute and School of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai, China
Neutron Scattering Division, Oak Ridge National Laboratory, Oak Ridge, TN, United States
Department of Physics, Southern University of Science and Technology, Shenzhen, China
Kirensky Institute of Physics, Federal Research Center, Krasnoyarsk, Russian Federation
Helmholtz-Zentrum Berlin fur Materialien und Energie, Berlin, Germany
Heinz Maier-Leibnitz Zentrum, Technische Universitat Munchen, Garching, Germany
Lviv Polytechnic National University, Lviv, Ukraine
Paul Scherrer Institute, Villigen PSI, Villigen, Switzerland

Доп.точки доступа:
Nikitin, S. E.; Nishimoto, S.; Fan, Y.; Wu, J.; Wu, L. S.; Sukhanov, A. S.; Brando, M.; Pavlovskii, N. S.; Павловский, Николай Сергеевич; Xu, J.; Vasylechko, L.; Yu, R.; Podlesnyak, A.
}
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13.


    Val'kov, V. V.
    Properties of the heavy-fermion spectrum in the canted phase of antiferromagnetic intermetallides / V. V. Val'kov, D. M. Dzebisashvili // Theor. Math. Phys. - 2010. - Vol. 162, Is. 1. - P. 106-125, DOI 10.1007/s11232-010-0008-4. - Cited References: 23. - This paper was supported by the Russian Foundation for Basic Research (Grant No. 07-02-00226), the Siberian Branch, Russian Academy of Sciences (Integrated Project No. 53), and the program "Strong Electron Correlations" of the Physics Division, Russian Academy of Sciences. . - ISSN 0040-5779
РУБ Physics, Multidisciplinary + Physics, Mathematical
Рубрики:
PERIODIC ANDERSON MODEL
   KONDO-LATTICE

   VALENCE

Кл.слова (ненормированные):
periodic Anderson model -- heavy fermion -- antiferromagnetism -- canted phase -- Antiferromagnetism -- Canted phase -- Heavy fermion -- Periodic Anderson model
Аннотация: We study the effect of the magnetic-field-induced canting of magnetic sublattices on the energy structure of heavy fermion quasiparticles in intermetallides with antiferromagnetic-type ordering. We work in the framework of an effective Hamiltonian of the periodic Anderson model in the regime of strong electron correlations. With the virtual transfers into high-energy double states taken into account, this Hamiltonian involves exchange interactions between spin moments of the f ions and the s-f-exchange coupling between the two subsystems. For a noncollinear problem geometry, we introduce a unitary transformation that allows reducing an eighth-order equation for the spectrum of heavy fermions to two fourth-order equations. We show that the quasimomentum dependence of the heavy-fermion energy changes qualitatively under the transition from the antiferromagnetic phase to a phase with a considerable canting angle emerging in an external magnetic field.

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Держатели документа:
[Val'kov, V. V.] RAS, Siberian Branch, Inst Phys, Krasnoyarsk, Russia
[Dzebisashvili, D. M.] Fed Siberian Univ, Krasnoyarsk, Russia
ИФ СО РАН
Institute of Physics, Siberian Branch, RAS, Krasnoyarsk, Russian Federation
Federal Siberian University, Krasnoyarsk, Russian Federation

Доп.точки доступа:
Dzebisashvili, D. M.; Дзебисашвили, Дмитрий Михайлович; Вальков, Валерий Владимирович
}
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14.


    Val'kov, V. V.
    Origin of the spin polaron quasiparticles and their cooper instability in High-Tc superconductors / V. V. Val'kov, D. M. Dzebisashvili, A. F. Barabanov // J. Supercond. Nov. Magn. - 2016. - Vol. 29, Is. 4. - P. 1049-1055, DOI 10.1007/s10948-016-3383-8. - Cited References:15. - This study was supported by the Russian Foundation for Basic Research, projects nos. 13-02-00523, 13-02-00909 and the Dynasty Foundation. . - ISSN 1557-1939. - ISSN 1557-1947
   Перевод заглавия: Природа спин-поляронных квазичастиц и их куперовской неустойчивости в высокотемпературных сверхпроводниках
РУБ Physics, Applied + Physics, Condensed Matter
Рубрики:
Model
   State

Кл.слова (ненормированные):
Cuprate High-T-c superconductors -- Spin polarons -- Spin-fermion model
Аннотация: IIn the framework of the spin-fermion model, it is shown that accounting for the strong spin-charge fluctuations between holes of copper and oxygen ions in cuprate High-T c superconductors leads to the formation of the Fermi spin-polaron quasiparticles. It is demonstrated that the large value of the binding energy of such quasiparticle is determined by the processes in which hopping intensity of the oxygen holes depends significantly on the spin configuration of holes on the copper and oxygen ions. It was found that the ensemble of such quasiparticles manifests Cooper instability and the concentration dependence of the critical temperature is in good agreement with the experimental data.

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Держатели документа:
SB RAS, LV Kirensky Phys Inst, Krasnoyarsk 660036, Russia.
RAS, Inst High Pressure Phys, Troitsk 142098, Moscow Region, Russia.

Доп.точки доступа:
Dzebisashvili, D. M.; Дзебисашвили, Дмитрий Михайлович; Barabanov, A. F.; Вальков, Валерий Владимирович; Russian Foundation for Basic Research [13-02-00523, 13-02-00909]; Dynasty Foundation
}
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15.


    Val'kov, V. V.
    On the s-type superconductivity in heavy-fermion compounds / V. V. Val'kov, D. M. Dzebisashvili // JETP Letters. - 2006. - Vol. 84, Is. 4. - P. 217-221, DOI 10.1134/S0021364006160119. - Cited References: 8 . - ISSN 0021-3640
РУБ Physics, Multidisciplinary

Аннотация: The amplitude of scattering of f electrons has been calculated for the periodic Anderson model in the strong-correlation limit (U = infinity) in the Cooper channel. From the condition of the existence of a pole of this amplitude, an equation is derived for determining the critical temperature (T-c) of the transition to the superconducting phase with the s symmetry of the order parameter. The temperature T-c as a function of the electron density and hybridization parameter has been calculated by self-consistently solving the system of equations. The region of the existence of the superconducting phase is found to adjoin the region of the existence of the unsaturated ferromagnetic state and does not overlap it. The results can be used to describe the transition to the superconducting phase with the s symmetry of the order parameter in heavy-fermion skutterudite LaFe4P12. In this case, the inclusion of the scattering of fermions by spin fluctuations turns out to be substantial enough to obtain T-c values close to the experimental data.

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Держатели документа:
Russian Acad Sci, LV Kirensky Phys Inst, Siberian Div, Krasnoyarsk 660036, Russia
Krasnoyarsk State Univ, Krasnoyarsk 660075, Russia
Krasnoyarsk State Tech Univ, Krasnoyarsk 660074, Russia
ИФ СО РАН
Ktrenskii Institute of Physics, Siberian Division, Russian Academy of Sciences, Akademgorodok, Krasnoyarsk, 660036, Russian Federation
Krasnovarsk State University, Krasnoyarsk, 660075, Russian Federation
Krasnoyarsk State Technical University, Krasnoyarsk, 660074, Russian Federation

Доп.точки доступа:
Dzebisashvili, D. M.; Дзебисашвили, Дмитрий Михайлович; Вальков, Валерий Владимирович
}
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16.


    Val'kov, V. V.
    On the implementation of the coexistence phase of antiferromagnetism and superconductivity in heavy-fermion intermetallides / V. V. Val'kov, A. O. Zlotnikov // JETP Letters. - 2012. - Vol. 95, Is. 7. - P. 350-356, DOI 10.1134/S0021364012070089. - Cited References: 29. - This work was supported by the Presidium of the Russian Academy of Sciences (program "Quantum Mesoscopic and Disordered Structures"), the Russian Foundation for Basic Research (project nos. 10-02-00251 and 11-02-98007-Siberia), and the Ministry of Education and Science of the Russian Federation (federal program "Human Capital for Science and Education in Innovative Russia" for 2009-2013). . - ISSN 0021-3640
РУБ Physics, Multidisciplinary
Рубрики:
QUANTUM-CRITICAL-POINT
   CRITICAL PRESSURE

   CERHIN5

   LATTICE

Аннотация: The region of the state diagram in which the pressure-induced quantum phase transition occurs with the destruction of the antiferromagnetic ordering and the appearance of the superconductivity has been described within the periodic Anderson model. It has been shown that a microscopically homogeneous coexistence phase of antiferromagnetism and superconductivity is implemented in the vicinity of the critical point, which was experimentally found in the heavy-fermion compound CeRhIn5. In this region, the pressure increase is accompanied by the experimentally observed strong growth of the effective fermion mass.

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Публикация на русском языке Вальков, Валерий Владимирович. О реализации фазы сосуществования антиферромагнетизма и сверхпроводимости в тяжелофермионных интерметаллидах [Текст] / В. В. Вальков, A. O. Злотников // Письма в Журн. эксперим. и теор. физ. : Санкт-Петербургская издательская фирма "Наука" РАН, 2012. - Т. 95 Вып. 7.- P.390-396

Держатели документа:
[Val'kov, V. V.
Zlotnikov, A. O.] Russian Acad Sci, Siberian Branch, LV Kirensky Phys Inst, Krasnoyarsk, Russia
[Val'kov, V. V.] Siberian State Aerosp Univ, Krasnoyarsk, Russia

Доп.точки доступа:
Zlotnikov, A. O.; Злотников, Антон Олегович; Вальков, Валерий Владимирович
}
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17.


    Val'kov, V. V.
    Nature of Cooper instability of spin polarons in cuprate high-Tc superconductors / V. V. Val'kov, D. M. Dzebisashvili, A. F. Barabanov // J. Low Temp. Phys. - 2015. - Vol. 181, Is. 3-4. - P. 134-138, DOI 10.1007/s10909-015-1331-9. - Cited References:10. - This study was supported by the Russian Foundation for Basic Research, Projects Nos. 13-02-00523, 13-02-00909 and the Dynasty Foundation. . - ISSN 0022. - ISSN 1573-7357
   Перевод заглавия: Природа куперовской неустойчивости спиновых поляронов в купратных высокотемпературных сверхпроводниках
РУБ Physics, Applied + Physics, Condensed Matter
Рубрики:
OXIDES
   MODEL

Кл.слова (ненормированные):
High-T-c superconductors -- Spin polarons -- Spin-fermion model
Аннотация: It is shown that the exchange interaction in the subsystem of localized moments of copper ions can trigger a Cooper instability in the ensemble of spin-polaron quasiparticles in cuprate high-temperature superconductors. It is important that, inherent to cuprates, strong coupling between Fermi and spin degrees of freedom leads on the one hand to formation of spin-polaron quasiparticles and, on the other hand, allows to transfer the interaction between Bose degrees of freedom onto the interaction between Fermi quasiparticles. The solution of the integral equation for the d-wave superconducting order parameter is well consistent with the available experimental data.

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Держатели документа:
Russian Acad Sci, LV Kirensky Phys Inst, Siberian Branch, Krasnoyarsk 660036, Russia.
MF Reshetnev Siberian State Aerosp Univ, Krasnoyarsk 660014, Russia.
Russian Acad Sci, Inst High Pressure Phys, Troitsk 142092, Moscow Region, Russia.

Доп.точки доступа:
Dzebisashvili, D. M.; Дзебисашвили, Дмитрий Михайлович; Barabanov, A. F.; Вальков, Валерий Владимирович; Russian Foundation for Basic Research [13-02-00523, 13-02-00909]; Dynasty Foundation
}
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18.


   
    Multiple fermion scattering in the weakly coupled spin-chain compound YbAlO3 / S. E. Nikitin, S. Nishimoto, Y. Fan [et al.] // Nat. Commun. - 2021. - Vol. 12, Is. 1. - Ст. 3599, DOI 10.1038/s41467-021-23585-z. - Cited References: 34. - We acknowledge C.D. Batista for fruitful discussions, U. Nitzsche for technical assistance, P.Y. Portnichenko for help with the neutron-scattering experiment, and B. Normand for insightful suggestions and careful proofreading of the manuscript. This research used resources at the Spallation Neutron Source, a DOE Office of Science User Facility operated by Oak Ridge National Laboratory. S.N. acknowledges support by the Deutsche Forschungsgemeinschaft through SFB 1143 project no. A05. S.E.N. and A.S.S. acknowledge support from the International Max Planck Research School for Chemistry and Physics of Quantum Materials (IMPRS-CPQM). The work at Renmin University was supported by the Ministry of Science and Technology of China, National Program on Key Research Project (grant number 2016YFA0300504), the National Science Foundation of China (grant number 11674392), and the Fundamental Research Funds for the Central Universities and the Research Funds of Renmin University of China (grant number 18XNLG24). J.W. acknowledges additional support from a Shanghai talent program. The work at Shanghai Jiao Tong University is sponsored by the Natural Science Foundation of Shanghai with grant no. 20ZR1428400 and Shanghai Pujiang Program with grant no. 20PJ1408100 (J.W) . - ISSN 2041-1723
Кл.слова (ненормированные):
detection method -- electron -- inorganic compound -- neutron diffraction -- quantum mechanics -- scattering -- fermion
Аннотация: The Heisenberg antiferromagnetic spin-1/2 chain, originally introduced almost a century ago, is one of the best studied models in quantum mechanics due to its exact solution, but nevertheless it continues to present new discoveries. Its low-energy physics is described by the Tomonaga-Luttinger liquid of spinless fermions, similar to the conduction electrons in one-dimensional metals. In this work we investigate the Heisenberg spin-chain compound YbAlO3 and show that the weak interchain coupling causes Umklapp scattering between the left- and right-moving fermions and stabilizes an incommensurate spin-density wave order at q = 2kF under finite magnetic fields. These Umklapp processes open a route to multiple coherent scattering of fermions, which results in the formation of satellites at integer multiples of the incommensurate fundamental wavevector Q = nq. Our work provides surprising and profound insight into bandstructure control for emergent fermions in quantum materials, and shows how neutron diffraction can be applied to investigate the phenomenon of coherent multiple scattering in metals through the proxy of quantum magnetic systems.

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Держатели документа:
Max Planck Institute for Chemical Physics of Solids, Dresden, Germany
Institut fur Festkorper- und Materialphysik, Technische Universitat Dresden, Dresden, Germany
Department of Physics, Technical University Dresden, Dresden, Germany
Institute for Theoretical Solid State Physics, IFW Dresden, Dresden, Germany
Department of Physics and Beijing Key Laboratory of Opto-Electronic Functional Materials and Micro-Nano Devices, Renmin University of China, Beijing, China
Tsung-Dao Lee Institute and School of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai, China
Neutron Scattering Division, Oak Ridge National Laboratory, Oak Ridge, TN, United States
Department of Physics, Southern University of Science and Technology, Shenzhen, China
Kirensky Institute of Physics, Federal Research Center, Krasnoyarsk, Russian Federation
Helmholtz-Zentrum Berlin fur Materialien und Energie, Berlin, Germany
Lviv Polytechnic National University, Lviv, Ukraine
Paul Scherrer Institute, Villigen PSI, Villigen, Switzerland
Beijing National Laboratory for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences, Beijing, China
Heinz Maier-Leibnitz Zentrum, Technische Universitat Munchen, Garching, Germany

Доп.точки доступа:
Nikitin, S. E.; Nishimoto, S.; Fan, Y.; Wu, J.; Wu, L. S.; Sukhanov, A. S.; Brando, M.; Pavlovskii, N. S.; Павловский, Николай Сергеевич; Xu, J.; Vasylechko, L.; Yu, R.; Podlesnyak, A.
}
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19.


   
    Modification of the standard model for the lanthanides / U. . Lundin [et al.] // Solid State Commun. - 2000. - Vol. 115, Is. 1. - P. 7-12, DOI 10.1016/S0038-1098(00)00126-5. - Cited References: 33 . - ISSN 0038-1098
РУБ Physics, Condensed Matter
Рубрики:
ELECTRONIC-STRUCTURE CALCULATIONS
   DENSITY-FUNCTIONAL THEORY

   PARTICLE BAND-STRUCTURE

   AB-INITIO CALCULATIONS

   FERROMAGNETIC NICKEL

   COHESIVE PROPERTIES

   CRYSTAL-STRUCTURE

   MOTT INSULATORS

   FERMION SYSTEMS

   PR METAL

Кл.слова (ненормированные):
metals -- electronic band structure -- Band structure -- Elastic moduli -- Kohn-Sham scheme -- Rare earth elements
Аннотация: We show that incorporation of strong electron correlations into the Kohn-Sham scheme of band structure calculations leads to a modification of the standard model of the lanthanides and that this procedure removes the existing discrepancy between theory and experiment concerning the ground state properties. Within the picture suggested, part of the upper Hubbard f-band is occupied due to conduction band-f-mixing interaction (that is renormalized due to correlations) and this contributes to the cohesive energy of the crystal. The lower Hubbard band has zero width and describes fermionic excitations in the shell of localized f-s. Fully self-consistent calculations (with respect to both charge density and many-electron population numbers of the f-shell) of the equilibrium volume V-0 and the bulk modulus of selected lanthanides have been performed and a good agreement with experiment is obtained. (C) 2000 Elsevier Science Ltd. All rights reserved.

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Держатели документа:
Univ Uppsala, Dept Phys, Condensed Matter Theory Grp, S-75121 Uppsala, Sweden
Russian Acad Sci, LV Kirensky Phys Inst, Krasnoyarsk 660036, Russia
ИФ СО РАН
Condensed Matter Theory Group, Dept. Phys., Univ. Uppsala, B., Uppsala, Sweden
Kirensky Institute of Physics, Russian Academy of Sciences, 660036, Krasnoyarsk, Russian Federation

Доп.точки доступа:
Lundin, U.; Sandalov, I.; Eriksson, O.; Johansson, B.
}
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20.


   
    Hybrid LDA and generalized tight-binding method for electronic structure calculations of strongly correlated electron systems / M. M. Korshunov [et al.] // Phys. Rev. B. - 2005. - Vol. 72, Is. 16. - Ст. 165104, DOI 10.1103/PhysRevB.72.165104. - Cited References: 82 . - ISSN 1098-0121
РУБ Physics, Condensed Matter
Рубрики:
T-J MODEL
   DENSITY-FUNCTIONAL CALCULATION

   NARROW ENERGY BANDS

   MEAN-FIELD THEORY

   COULOMB INTERACTIONS

   FERMION SYSTEMS

   COPPER OXIDES

   SUPERCONDUCTORS

   LA2-XSRXCUO4

   OXYGEN

Аннотация: A hybrid scheme for the electronic structure calculations of strongly correlated electron systems is proposed. The ab initio local density approximation calculation is used to construct the Wannier functions and obtain single electron and Coulomb parameters of the multiband Hubbard-type model. In strong correlation regime the electronic structure within multiband Hubbard model is calculated by the generalized tight-binding method, which combines the exact diagonalization of the model Hamiltonian for a small cluster (unit cell) with perturbation treatment of the intercluster hopping and interactions. For undoped La2CuO4 and Nd2CuO4 this scheme results in charge transfer insulators with correct values of gaps and dispersions of bands in agreement with the angle-resolved photoemission data.

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Держатели документа:
Russian Acad Sci, LV Kirensky Phys Inst, Siberian Branch, Krasnoyarsk 660036, Russia
Russian Acad Sci, Inst Met Phys, Ural Div, Ekaterinburg 620219, Russia
ИФ СО РАН
L.V. Kirensky Institute of Physics, Siberian Branch of Russian Academy of Sciences, 660036 Krasnoyarsk, Russian Federation
Institute of Metal Physics, Russian Academy of Sciences-Ural Division, 620219 Yekaterinburg GSP-170, Russian Federation

Доп.точки доступа:
Korshunov, M. M.; Коршунов, Максим Михайлович; Gavrichkov, V. A.; Гавричков, Владимир Александрович; Ovchinnikov, S. G.; Овчинников, Сергей Геннадьевич; Nekrasov, I. A.; Pchelkina, Z. V.; Anisimov, V. I.
}
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