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1.


   
    9th-order nonlinear polarization and VUV generation in HG vapor / V. F. Lukinykh [et al.] // Appl. Phys. B. - 1984. - Vol. 34, Is. 3. - P. 171-173, DOI 10.1007/BF00697511. - Cited References: 13 . - ISSN 0721-7269
РУБ Physics, Applied

Кл.слова (ненормированные):
42.65 -- 42.80 -- LIGHT - Nonlinear Optical Effects -- VAPORS -- MERCURY AND AMALGAMS

WOS,
Scopus
Держатели документа:
L. V. Kirensky Institute of Physics, USSR Academy of Sciences, Siberian Branch, Krasnoyarsk, SU-660036, Russia
Krasnoyarsk State University, Krasnoyarsk, Russia

Доп.точки доступа:
Lukinykh, V. F.; Myslivets, S. A.; Мысливец, Сергей Александрович; Popov, A. K.; Попов, Александр Кузьмич; Slabko, V. V.; Слабко, Виталий Васильевич
}
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2.


   
    A New Nonlinear Optical Selenide Crystal AgLiGa2Se4 with Good Comprehensive Performance in Mid-Infrared Region / A. Yelisseyev, S. Lobanov, M. Molokeev [et al.] // Adv. Opt. Mater. - 2021. - Vol. 9, Is. 5. - Ст. 2001856, DOI 10.1002/adom.202001856. - Cited References: 32. - Crystal growth and investigation of physical properties were supported by Russian Science Foundation, Russia (#19‐12‐00085). Spectroscopic data were obtained at the Institute of Geology and Mineralogy, Siberian Branch of Russian Academy of Sciences, Russia; Ministry of Science and Higher Education, Russia (performed on a state assignment). The work on first‐principles calculations also supported by National Science Foundation in China (No.51872297) and Fujian Institute of Innovation (FJCXY18010201) in Chinese Academy of Sciences . - ISSN 2195-1071
   Перевод заглавия: Новый нелинейно-оптический кристалл селенида AgLiGa2Se4 с хорошими комплексными характеристиками в средней инфракрасной области
Кл.слова (ненормированные):
crystal growth -- first principles calculations -- inorganic functional materials -- laser damage threshold -- second harmonic generation
Аннотация: Mid‐infrared (mid‐IR) nonlinear optical (NLO) crystals are indispensable for the mid‐IR lasers generation with tunable wavelengths from 3 to 20 µm. AgGaSe2 is a commercial mid‐IR NLO crystal with the highest figures of merit, but suffers low laser damage threshold (LDT). To achieve the balance of optical transmission, NLO effect, and LDT, it is proposed to molecularly modify the AgGaSe2 structure by introducing the [LiSe4] tetrahedra, and successfully grow large crystals of a new selenide AgLiGa2Se4. The replacement of half of the heavy Ag+ cations with light Li+ increases the band gap to 2.2 eV (vs. 1.7 eV in AgGaSe2). The LDT value in AgLiGa2Se4 increases five times compared to that in AgGaSe2, while keeping a relatively large NLO susceptibility of 26 pm V−1. Moreover, the thermal expansion coefficients in AgLiGa2Se4 are approximately two times lower in absolute value compared with AgGaSe2, which is beneficial to the large crystal growth. All these advantages would make AgLiGa2Se4 a new promising NLO crystal for mid‐IR laser applications.

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Держатели документа:
Laboratory of Lithospheric Mantle and Diamond Deposits, Laboratory of Crystal Growth, Sobolev Institute of Geology and Mineralogy SB RAS, Novosibirsk, 630090, Russian Federation
Department of Physics Laboratory of Functional materials, Novosibirsk State University, Novosibirsk, 630090, Russian Federation
Laboratory of Crystal Physics, Kirensky Institute of Physics SB RAS, Krasnoyarsk, 660036, Russian Federation
Department of Physics, Far Eastern State Transport University, Khabarovsk, 680021, Russian Federation
Department of Engineering Physics and Radioelectronic, Siberian Federal University, Krasnoyarsk, 660041, Russian Federation
Technical Institute of Physics and Chemistry CAS, Beijing, 100190, China
University of Chinese Academy of Sciences, Beijing, 100190, China
Laboratory of Condensed Matter Spectroscopy, Institute of Automation and Electrometry SB RAS, Novosibirsk, 630090, Russian Federation

Доп.точки доступа:
Yelisseyev, A.; Lobanov, S.; Molokeev, M. S.; Молокеев, Максим Сергеевич; Zhang, S.; Pugachev, A.; Lin, Z.; Vedenyapin, V.; Kurus, A.; Khamoyam, A.; Isaenko, L.
}
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3.


   
    A Photonic Crystal with Raman Defect [Text] / V.G, Arkhipkin, S. A. Myslivets // Technical digest International conference ICONO/LAT 2010. - Казань, 2010. - Ст. LTuH6


Доп.точки доступа:
Arkhipkin, V.G,; Myslivets, S.A.; International Conference on Coherent and Nonlinear Optics(2010 ; Aug. ; 23-26 ; Казань); International Conference on Lasers, Applications, and Technologies(2010 ; Aug. ; 23-26 ; Казань)
}
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4.


    Aleksandrov, K. S.
    A method for determining nonlinear elastic constants of rocks / K. S. Aleksandrov, G. T. Prodaivoda, B. P. Maslov // Doklady Earth Sciences. - 2001. - Vol. 380. - P. 827-829 . - ISSN 1028-334X

Scopus

Публикация на русском языке Александров, Кирилл Сергеевич. Метод определения нелинейных упругих свойств горных пород [Текст] / К. С. Александров, Г. Т. Продайвода, Б. П. Маслов // Доклады Академии наук. - 2001. - Т. 380 № 1. - С. 109-112

Держатели документа:
Siberian Division, Institute of Physics, Russian Academy of Sciences, 660036, Akademgorodok, Krasnoyarsk, Russian Federation
Faculty of Geophysics, Kiev State University, ul. Vasil'kovskaya 90, Kiev, 03022, Ukraine
Timoshenko Institute of Mechanics, Natl. Academy of Sciences of Ukraine, ul. Nesterova 32, Kiev, 03057, Ukraine

Доп.точки доступа:
Prodaivoda, G. T.; Продайвода, Георгий Трофимович; Maslov, B. P.; Александров, Кирилл Сергеевич
}
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5.


    Aleksandrov, K. S.
    Determination of nonlinear elastic constants of rocks / K. S. Aleksandrov, G. T. Prodaivoda, B. P. Maslov // Dokl. Akad. Nauk. - 2001. - Vol. 380, Is. 1. - P. 109-113 . - ISSN 0869-5652

Scopus

Другая переводная версия Aleksandrov K. S. A method for determining nonlinear elastic constants of rocks [Текст] / K. S. Aleksandrov, G. T. Prodaivoda, B. P. Maslov // Doklady Earth Sciences. - 2001. - Vol. 380.- P.827-829

Публикация на русском языке Александров, Кирилл Сергеевич. Метод определения нелинейных упругих свойств горных пород [Текст] / К. С. Александров, Г. Т. Продайвода, Б. П. Маслов // Доклады Академии наук. - 2001. - Т. 380 № 1. - С. 109-112


Доп.точки доступа:
Prodaivoda, G. T.; Продайвода, Георгий Трофимович; Maslov, B. P.; Александров, Кирилл Сергеевич
}
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6.


    Aleksandrovsky, A. S.
    Nonlinear optical processes and DUV generation in random domain structures of SBO / A. S. Aleksandrovsky // Conference on Lasers and Electro-Optics Europe - Technical Digest / Conference on Lasers and Electro-Optics (2015 ; May ; 10-15 ; San Jose, California, US) : IEEE, 2015. - Cited References:3 . - ISBN 2160-9020
РУБ Engineering, Electrical & Electronic + Optics + Physics, Applied
Рубрики:
CRYSTAL
Аннотация: Random domain structures in orthorhombic strontium tetraborate (alpha-SBO) are capable in enhancing nonlinear optical conversion efficiency for large variety of processes throughout all transparency window of this material, down to 121 nm. Properties of the material, origin of domains, frequency doubling and autocorrelation measurements, conversion of supercontinuum to UV and continuously tunable VUV generation are described. Prospects of biphoton field generation in alpha-SBO are discussed.

WOS

Доп.точки доступа:
Александровский, Александр Сергеевич; Conference on Lasers and Electro-Optics(2015 ; May ; 10-15 ; San Jose, California, US)
}
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7.


    Aleksandrovsky, A. S.
    Nonlinear optical processes and DUV generation in random domain structures of SBO / A. S. Aleksandrovsky // Conference on Lasers and Electro-Optics Europe - Technical Digest / Conference on Lasers and Electro-Optics (2015 ; may ; 10–15 ; San Jose, California, US) : IEEE-Institute Electrical and Electronics Engineers, 2015. - Vol. 2015-August. - Ст. 7184028, DOI 10.1364/CLEO_SI.2015.STh3H.1. - Cited References: 3 . - ISBN 9781557529688 (ISBN)
РУБ Engineering, Electrical & Electronic + Optics + Physics, Applied
Рубрики:
CRYSTAL
Кл.слова (ненормированные):
Correlation -- Nonlinear optics -- Optical diffraction -- Optical frequency conversion -- Optical harmonic generation -- Ultrafast optics
Аннотация: Random domain structures in orthorhombic strontium tetraborate (α-SBO) are capable in enhancing nonlinear optical conversion efficiency for large variety of processes throughout all transparency window of this material, down to 121 nm. Properties of the material, origin of domains, frequency doubling and autocorrelation measurements, conversion of supercontinuum to UV and continuously tunable VUV generation are described. Prospects of biphoton field generation in α-SBO are discussed. © 2015 OSA.

Материалы конференции,
Материалы конференции,
Scopus,
WOS

Доп.точки доступа:
Александровский, Александр Сергеевич; Conference on Lasers and Electro-Optics(2015 ; May ; 10-15 ; San Jose, California, US)
}
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8.


    Aleksandrovsky, A. S.
    Nonlinear photonic crystals of strontium tetraborate / A. S. Aleksandrovsky, A. M. Vyunishev, A. I. Zaitsev // Photonic Crystals: Fabrication, Band Struct. and Appl. - New York : Nova Science Publishers, 2011. - P. 245-275 . - ISBN 978-161668953-7
Аннотация: Structural, optical and nonlinear optical properties of strontium tetraborate (SBO) single crystals are summarized. SBO presently is not considered to be a ferroelectric, however, domain structures consisting of alternating oppositely poled domains, strongly resembling those present in such ferroelectrics as potassium titanyl phosphate and lithium niobate, were recently discovered in this crystal. Such geometrical properties as orientation, size, and degree of randomization, of these domain structures are described. The problem of origin of domain structures in SBO is considered, as well as the possibility of their characteristics control. From the point of view of optical properties, domain-structured samples of strontium tetraborate are classified as randomized nonlinear photonic crystals. Comparative study of nonlinear diffraction and random quasi-phase-matching of nanosecond and femtosecond laser pulses in these nonlinear photonic crystals is presented. Prospects of creation of nonlinear optical converters of laser radiation into VUV spectral region based on domain structured strontium tetraborate are discussed.

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

Доп.точки доступа:
Vyunishev, A. M.; Вьюнышев, Андрей Михайлович; Zaitsev, A. I.; Зайцев, Александр Иванович; Александровский, Александр Сергеевич
}
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9.


    Aleksandrovsky, A. S.
    Random quasi-phase-matching and nonlinear diffraction in nonlinear photonic crystal structures of strontium tetraborate : conference paper / A. S. Aleksandrovsky, A. M. Vyunishev, A. I. Zaitsev // Ultrafast optics conference. - Davos, 2013. - Ст. Fr2.3

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

Доп.точки доступа:
Vyunishev, A. M.; Вьюнышев, Андрей Михайлович; Zaitsev, A. I.; Зайцев, Александр Иванович; Александровский, Александр Сергеевич; Ultrafast optics conference (9 ; 2013 ; March; 2-8 ; Davos Congr. Center, Switzerland)
}
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10.


    Alekseev, K. N.
    Optical chaos in nonlinear photonic crystals / K. N. Alekseev, A. V. Ponomarev // JETP Letters. - 2002. - Vol. 75, Is. 4. - P. 174-178, DOI 10.1134/1.1475717. - Cited References: 34 . - ISSN 0021-3640
РУБ Physics, Multidisciplinary
Рубрики:
POLED LITHIUM-NIOBATE
   3RD-HARMONIC GENERATION

   WAVE-GUIDES

   SUPERLATTICES

   CHI((2))

Аннотация: We examine the spatial evolution of lightwaves in a nonlinear photonic crystal with a quadratic nonlinearity, when a second harmonic and a sum-frequency generation are simultaneously quasi-phase-matched. We find the conditions for a transition to Hamiltonian chaos for different amplitudes of lightwaves at the crystal boundary. (C) 2002 MAIK "Nauka/ Interperiodica".

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Держатели документа:
Univ Oulu, Dept Phys Sci, FIN-90014 Oulu, Finland
Max Planck Inst Phys Komplexer Syst, D-01187 Dresden, Germany
Russian Acad Sci, LV Kirensky Phys Inst, Theory Nonlinear Proc Lab, Krasnoyarsk 660036, Russia
Krasnoyarsk State Univ, Dept Phys, Krasnoyarsk 660041, Russia
ИФ СО РАН
Max-Planck-Inst. Physik Komplexer S., D-01187 Dresden, Germany
Theor. of Nonlinear Processes Lab., Kirensky Institute of Physics, Russian Academy of Sciences, Krasnoyarsk, 660036, Russian Federation
Department of Physics, Krasnoyarsk State University, Krasnoyarsk, 660041, Russian Federation

Доп.точки доступа:
Ponomarev, A. V.
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