62.50.−p High-pressure effects in solids and liquids
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V.B. Mintsev, V.K. Gryaznov “V.E. Fortov and dynamic methods in nonideal plasma physics. Chernogolovka” Phys. Usp. 64 1149–1166 (2021)
01.60.+q, 62.50.−p, 64.10.+h, 64.30.−t, 65.40.−b (all)
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E.A. Ekimov, M.V. Kondrin “Nontraditional synthesis of nano- and microcrystal diamonds under high static pressures” Phys. Usp. 62 199–206 (2019)
62.50.−p, 81.05.ug, 81.40.Vw (all)
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S.M. Stishov, A.E. Petrova “Helical itinerant magnet MnSi: magnetic phase transition” Phys. Usp. 60 1268–1276 (2017)
62.50.−p, 75.30.Kz, 75.40.Cx, 77.80.B− (all)
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A.N. Utyuzh, A.V. Mikheyenkov “Hydrogen and its compounds under extreme pressure” Phys. Usp. 60 886–901 (2017)
07.35.+k, 61.50.Ks, 62.50.−p, 64.70.K−, 67.63.−r, 67.80.F−, 67.80.ff, 74.62.Fj, 81.40.Vw (all)
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V.V. Brazhkin “Phase transformations in liquids and the liquid—gas transition in fluids at supercritical pressures” Phys. Usp. 60 954–957 (2017)
61.20.−p, 62.10.+s, 62.50.−p, 64.70.Ja (all)
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G.I. Kanel, E.B. Zaretsky et al “Unusual plasticity and strength of metals at ultra-short load durations” Phys. Usp. 60 490–508 (2017)
62.50.−p
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Yu.Kh. Vekilov, O.M. Krasil’nikov, A.V. Lugovskoy “Elastic properties of solids at high pressure” Phys. Usp. 58 1106–1114 (2015)
61.50.Ks, 62.20.de, 62.50.−p, 64.30.Ef (all)
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Yu.Kh. Vekilov, O.M. Krasil’nikov et al “Elastic phase transitions in metals at high pressures” Phys. Usp. 57 897–902 (2014)
61.50.Ks, 61.66.Bi, 62.20.D−, 62.50.−p (all)
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V.E. Fortov, I.V. Lomonosov “Ya B Zeldovich and equation of state problems for matter under extreme conditions” Phys. Usp. 57 219–233 (2014)
01.60.+q, 62.50.−p, 64.10.+h, 64.30.−t, 65.40.−b (all)
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V.V. Brazhkin, A.G. Lyapin et al “Where is the supercritical fluid on the phase diagram?” Phys. Usp. 55 1061–1079 (2012)
62.10.+s, 62.50.−p, 63.50.−x, 64.60.F−, 64.60.fd, 65.20.De, 66.20.Cy (all)
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A.B. Medvedev, R.F. Trunin “Shock compression of porous metals and silicates” Phys. Usp. 55 773–789 (2012)
07.35.+k, 42.70.Ce, 62.50.−p, 91.60.Fe, 96.12.−a (all)
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V.V. Brazhkin ““Lost in Translation”: what do the negative values of effective Grüneisen coefficients mean in shock wave experiments? [Extended comment on “Shock compression of porous metals and silicates” by A B Medvedev and R F Trunin, Phys. Usp. 55 773 (2012)]” Phys. Usp. 55 790–795 (2012)
61.43.−j, 62.50.−p, 64.60.My, 65.60.+a, 91.35.−x, 91.40.Qa (all)
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A.M. Glezer “Creation principles of new-generation multifunctional structural materials” Phys. Usp. 55 522–529 (2012)
61.43.−j, 61.46.+w, 62.50.−p (all)
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“50 years of the Condensed Matter Physics Research Council of the Russian Academy of Sciences (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 9 November 2011)” Phys. Usp. 55 522–529 (2012)
01.10.Fv, 61.43.−j, 61.46.+w, 62.50.−p (all)
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S.M. Stishov, A.E. Petrova “Itinerant helimagnet MnSi” Phys. Usp. 54 1117–1130 (2011)
62.50.−p, 75.30.Kz, 75.40.Cx, 77.80.B− (all)
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R.F. Trunin, V.D. Urlin, A.B. Medvedev “Dynamic compression of hydrogen isotopes at megabar pressures” Phys. Usp. 53 577–593 (2010)
07.35.+k, 62.50.−p, 64.30.−t (all)
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Yu.Kh. Vekilov, O.M. Krasil’nikov “Structural transformations in metals at high compression ratios” Phys. Usp. 52 831–834 (2009)
61.50.Ks, 61.66.Bi, 62.20.D−, 62.50.−p (all)
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S.M. Stishov, L.G. Khvostantsev et al “On the 50th anniversary of the L F Vereshchagin Institute for High Pressure Physics, RAS (Scientific outreach session of the Physical Sciences Division of the Russian Academy of Sciences, 23 April 2008)” Phys. Usp. 51 1055–1083 (2008)
01.65.+g, 07.35.+k, 61.50.Ks, 62.50.−p, 64.70.kd, 71.15.−m, 71.18.+y, 73.20.−r, 74.20.−z, 74.70.−b, 75.10.−b (all)
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