M. I. Kulish, V. B. Mintsev, S. V. Dudin, D. N. Nikolaev, I. V. Lomonosov, V. E. Fortov
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References
|
|
| |
| 1. |
Fortov V.E., Moschnye udarnye volny na Zemle i v kosmose, Fizmatlit, M., 2019, 416 pp. |
| 2. |
Kormer S.B., “Opticheskie issledovaniya svoistv udarno szhatykh kondensirovannykh dielektrikov”, UFN, 94:4 (1968), 641 |
| 3. |
Cheng G.J., Cai M., Pirzada D., Guinel J.F., Norton M.G., “Plastic Deformation in Silicon Crystal Induced by Heat-Assisted Laser Shock Peening”, J. Manuf. Sci. Eng., 130:1 (2008), 011008 |
| 4. |
Mujica A., Rubio A., Munoz A., Needs R., “High-pressure Phases of Group$-\rm IV{,}\,\rm III$–$\rm V{,}\,$ and $\rm II$–$\rm VI$ Compounds”, Rev. Mod. Phys., 75 (2003), 863 |
| 5. |
Li C., Wang C., Han J., Yan L., Deng B., Liu X., “A Comprehensive Study of the High-pressure–Temperature Phase Diagram of Silicon”, J. Mater. Sci., 53:10 (2018), 7475 |
| 6. |
Pavlovskii M.N., “Obrazovanie metallicheskikh modifikatsii germaniya i kremniya v usloviyakh udarnogo szhatiya”, Fizika tverdogo tela, 9:11 (1967), 3192 |
| 7. |
Gust W.H., Royce E.B., “Axial Yield Strengths and Two Successive Phase Transition Stresses for Crystalline Silicon”, J. Appl. Phys., 42 (1971), 1897 |
| 8. |
Goto T., Sato T., Syono Y., “Reduction of Shear Strength and Phase-Transition in Shock-Loaded Silicon”, J. Appl. Phys., 21 (1982), 369 |
| 9. |
Turneaure S.J., Sharma S.M., Gupta Y.M., “Nanosecond Melting and Recrystallization in Shock-Compressed Silicon”, Phys. Rev. Lett., 121 (2018), 135701 |
| 10. |
Churchill D.R., Armstrong B.H., Johnston R.R., Müller K.G., “Absorption Coefficients of Heated Air: A Tabulation to $24000$ K”, JQSRT, 6:4 (1966), 371 |
| 11. |
Schinke C., Peest P.C., Schmidt J., Brendel R., Bothe K., Vogt M.R., Kroger I., Winter S., Schirmacher A., Lim S., Nguyen H.T., MacDonald D., “Uncertainty Analysis for the Coefficient of Band-to-band Absorption of Crystalline Silicon”, Aip Adv., 5:6 (2015), 067168-1 |
| 12. |
Salzberg C.D., Villa J.J., “Infrared Refractive Indexes of Silicon, Germanium and Modified Selenium Glass”, J. Opt. Soc. Am., 47:3 (1957), 244 |
| 13. |
Strickson O., Artacho E., “Ab Initio Calculation of the Shock Hugoniot of Bulk Silicon”, Phys. Rev. B, 93 (2016), 094107 |
| 14. |
Olijnyk H., Sikka S.K., Holzapfel W.B., “Structural Phase Transitions in Si and Ge Under Pressures up to $50$ GPa”, Phys. Lett. A, 103:3 (1984), 137 |
| 15. |
Duclos S.J., Vohra Y.K., Ruoff A.L., “Hcp-to-fcc Transition in Silicon at $78$ GPa and Studies to $100$ GPa”, Phys. Rev. Lett., 58:8 (1987), 775 |
| 16. |
Sheludyak Yu.E., Kashporov L.Ya., Malinin L.A., Tsalkov V.N., Teplofizicheskie svoistva komponentov goryuchikh sistem: Cpr., ed. Silin N.A., M., 1992, 184 pp. |
| 17. |
Lomonosov I.V., “Multi-phase Equation of State for Aluminum”, Laser Part. Beams, 25 (2007), 567 |
| 18. |
Nikolaev D.N., Kulish M.I., Dudin S.V., Mintsev V.B., Lomonosov I.V., Fortov V.E., “Udarnaya szhimaemost monokristallicheskogo kremniya v diapazone davleniya $280$–$510$ GPa”, TVT, 59:6 (2021), 860 |
| 19. |
Nikolaev D.N., Kulish M.I., Dudin S.V., Mintsev V.B., Lomonosov I.V., Fortov V.E., “Measurement of Dense Plasma Temperature of the Shock-compressed Silicon”, Contrib. Plasma Phys., 2021, e202100113 |
| 20. |
Mintsev V.B., Zaporogets Y.B., “Reflectivity of Dense Plasma”, Contrib. Plasma Phys., 29:4–5 (1989), 493 |
| 21. |
Lower T., Kondrashov V.N., Basko M., Kendl A., Meyerter-Vehn J., Sigel R., Ng A., “Reflectivity and Optical Brightness of Laser-induced Shocks in Silicon”, Phys. Rev. Lett., 80:18 (1998), 4000 |