Calculation of optical properties of aluminum
Matematičeskoe modelirovanie, Tome 22 (2010) no. 5, pp. 15-28.

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In the present work optical properties of electronic fermi-gas of aluminum are considered at any temperature ($T\ge\varepsilon_F$). From the decision of the quantum kinetic equation expressions for temperature and frequency dependences of inductivity are received. By means of Fennel's formula frequency and temperature dependences of reflectivity of an irradiated surface and volume factor of absorption are defined.
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A. V. Mazhukin; O. N. Koroleva. Calculation of optical properties of aluminum. Matematičeskoe modelirovanie, Tome 22 (2010) no. 5, pp. 15-28. http://geodesic.mathdoc.fr/item/MM_2010_22_5_a1/

[1] Dyuli U., Lazernaya tekhnologiya i analiz materialov, Mir, M., 1986

[2] Zolotarëv V. N., Morozov V. I., Smirnova E. V., Opticheskie postoyannye prirodnykh i tekhnicheskikh sred, Spravochnik, Khimiya, Leningradskoe otdelenie, L., 1984

[3] E. D. Palik (ed.), Handbook of Optical Constants of Solid, v. II, Academic Press, Boston–San Diego–New York, 1991

[4] Rykalin N. N., Uglov A. A., Zuev I. V., Kokora A. N., Lazernaya i elektronno-luchevaya obrabotka metallov, Mashinostroenie, M., 1985

[5] Martynenko Yu. V., Yavlinskii Yu. N., “Okhlazhdenie elektronnogo gaza metalla pri vysokoi temperature”, DAN SSSR. Ser. Fiz., 270:1 (1983), 88–91

[6] Zaiman Dzh., Printsipy teorii tvërdogo tela, Mir, M., 1966

[7] Born M., Volf E., Osnovy optiki, Nauka, M., 1973

[8] Edward D. Palik (ed.), Handbook of Optical Constants of Solids, v. II, Academic Press, INC. Publishers, Boston–San Diego–New York, 1991, 1086 pp.

[9] Lifshits E. M., Pitaevskii L. P., Fizicheskaya kinetika, Nauka, GRFML, M., 1979 | MR | Zbl

[10] Silin V. P., Rukhadze A. A., Elektromagnitnye svoistva plazmy i plazmopodobnykh sred, Gosatomizdat, M., 1961

[11] Klimontovich Yu. L., Silin V. P., “O spektrakh sistem vzaimodeistvuyuschikh chastits”, ZhETF, 23 (1952), 151 | Zbl

[12] Martynenko Yu. V., Yavlinskii Yu. N., Elektronnyi Fermi-gaz pri proizvolnoi temperature, preprint IAE – 3773/1, M., 1983

[13] Lindhard J., “On the properties of gas of charged particles”, Det Kongelige Danske Videnskabernes Selskab. Matemalisk-fysiske Meddelelser, 28:8 (1954), 1–57 | MR

[14] Kitel Ch., Vvedenie v fiziku tverdogo tela, GRFMLI “Nauka”, M., 1978, 792 pp.

[15] Alen L. U., Astrofizicheskie velichiny, Mir, M., 1977, 445 pp.