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1.

Antiferromagnetic resonance and phase diagram of HoFe3(BO3)4/A. Pankrats, G. Petrakovskii [et al.] // International Symposium "Spin waves - 2009", 2009.-С.40
2.

Aplesnin S. S. Influence of the four-spin exchange interaction on the magnetic properties of manganites/S. S. Aplesnin, N. I. Piskunova // Journal of Physics: Condensed Matter:IOP PUBLISHING LTD, 2005. т.Vol. 17,N Is. 37.-С.5881-5888
3.

Avramov P. V. Non-diagram transitions in polarized X-ray absorption CuL(3) spectra of HTSC-ceramics/P. V. Avramov, S. G. Ovchinnikov // FIZIKA TVERDOGO TELA:MEZHDUNARODNAYA KNIGA, 1996. т.Vol. 38,N Is. 11.-С.3226-3240
4.

B-11-NMR study of low-temperature phase transition in CuB2O4/Y. .. Yasuda [et al.] // Journal of Physics: Condensed Matter:IOP PUBLISHING LTD, 2007. т.Vol. 19:International Conference on Highly Frustrated Magnetism (AUG 15-19, 2006, Osaka, JAPAN),N Is. 14.- Ст.145277
5.

Behaviour of thermal expansion of (1-x)Pb(Ni1/3Nb2/3)O3-xPbTiO3 solid solutions/K. Bormanis [et al.] // Proceedings of the Estonian Academy of Sciences, 2017. т.Vol. 66,N Is. 4.-С.363-371
6.

Bulgakov E. N. Phase-diagram of the quantum magnet with competing couplings/E. N. Bulgakov // Physica Status Solidi B - Basic Research, 1988. т.Vol. 148,N Is. 2.-С.K139-K141
7.

Bulgakov E. N. Vortex phase diagram of F=1 spinor Bose-Einstein condensates/E. N. Bulgakov, A. F. Sadreev // PHYSICAL REVIEW LETTERS:AMERICAN PHYSICAL SOC, 2003. т.Vol. 90,N Is. 20.- Ст.200401
8.

Calorimetric and 23Na MAS NMR Study of the Phase Diagram of NaNb1-xTaxO3 Solid Solutions/Aleksandrova I.P.Ivanov Yu.N. [et al.] // Functional mate rials, 2010. т.Vol. 17.-С.18-24
9.

Calorimetric and 23Na MAS NMR study of the phase diagram of NANB1_xTAxO3 solid solutions/I. P. Aleksandrova [et al.] // Functional Materials, 2010. т.Vol. 17,N Is. 1.-С.18-23
10.

Chemical pressure as an effective tool for tuning the structural disordering and barocaloric efficiency of complex fluorides (NH4)3MF7 (M: Sn, Ti, Ge, Si)/I. N. Flerov, M. V. Gorev, E. V. Bogdanov, N. M. Laptash // Journal of Physics D: Applied Physics, 2024. т.Vol. 57,N Is. 17.- Ст.175301
11.

Comparative analysis of elastocaloric and barocaloric effects in single-crystal and ceramic ferroelectric (NH4)2SO4/E. Mikhaleva, M. Gorev, V. Bondarev [et al.] // Scripta Materialia, 2021. т.Vol. 191.-С.149-154
12.

Comparative study of the magnetic phase diagrams and spin-flop-driven magnetodielectric responses of the pure and Mn3+-doped Pb2Fe2Ge2O9 single crystals/A. Pankrats, M. Kolkov, A. Balaev [et al.] // Journal of Magnetism and Magnetic Materials, 2021. т.Vol. 534.- Ст.168023
13.

Conventional and inverse barocaloric effects in ferroelectric NH4HSO4/M. V. Gorev [et al.] // Journal of Alloys and Compounds, 2019. т.Vol. 806.-С.1047-1051
14.

Diagram Approach to the Problem of the Normal Phase Properties of the Spin-Polaron Ensemble in Cuprate Superconductors/V. V. Val'kov [et al.] // Journal of Low Temperature Physics, 2019. т.Vol. 197,N Is. 1-2.-С.34-43
15.

Electronic transitions and genuine crystal-field parameters in copper metaborate CuB2O4/R. V. Pisarev [et al.] // PHYSICAL REVIEW B:AMER PHYSICAL SOC, 2011. т.Vol. 84,N Is. 7.- Ст.75160
16.

Exchange interaction between the high spin Co3+ states in LaCoO3/Y. S. Orlov, S. V. Nikolaev, V. A. Gavrichkov, S. G. Ovchinnikov // Computational Materials Science, 2022. т.Vol. 204.- Ст.111134
17.

Features of the behavior of the barocaloric effect near ferroelectric phase transition close to the tricritical point/E. A. Mikhaleva, I. N. Flerov, M. V. Gorev [et al.] // Crystals, 2020. т.Vol. 10,N Is. 1.- Ст.51
18.

Ferroelastic phase transitions in fluorides with cryolite and elpasolite structures/I. N. Flerov [et al.] // Crystallography Reports, 2004. т.Vol. 49,N Is. 1.-С.100-107
19.

Flerov I. N. Entropy of Rb2KB3+F6 (B3+: Se, In, Lu, Er, Ho) ferroelastics and the triple point on T(R(B)(3+)) diagram/I. N. Flerov, M. V. Gorev, V. N. Voronov // FIZIKA TVERDOGO TELA:MEZHDUNARODNAYA KNIGA, 1996. т.Vol. 38,N Is. 3.-С.717-727
20.

Flux pinning mechanisms and a vortex phase diagram of tin-based inverse opals/A. A. Bykov [et al.] // Superconductor Science & Technology, 2019. т.Vol. 32,N Is. 11.- Ст.115004
 

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