Monoclinic optically active absorbing crystals of class 2
Problemy fiziki, matematiki i tehniki, no. 4 (2011), pp. 38-44.

Voir la notice de l'article provenant de la source Math-Net.Ru

The article contains results of the research based on the scientific ideas and results of academician B.V. Bokut which were obtained using covariant methods of F.I. Fedorov. Results of the study of monoclinic optically active absorbing crystals of class 2 are presented. Comparison with rhombic crystals of class 222 is made. Peculiarities of polarization of eigenwaves near optical axes in crystals such as transparent optically active, absorbing, optically active and absorbing are consecutively considered. Dependencies of the azimuth of polarization of transmitted light with the incidence angle equal to zero are presented for these cases. Two cases for monoclinic crystals are considered. The first case is when there is absorption and symmetric axis number 2 lies in the same plane as optical axes and the second case is when axis number 2 is perpendicular to the optical axes. The main peculiarities are noticed when axis number 2 is perpendicular to the optical axes.
Keywords: covariant methods, transparent and absorbing crystals, monoclinic crystals of class 2, gyrotropy, azimuth of polarization, gyration tensor, eigen wave.
Mots-clés : biaxial crystals
@article{PFMT_2011_4_a7,
     author = {A. F. Konstantinova and T. G. Golovina and E. A. Evdischenko and B. V. Nabatov and K. K. Konstantinov},
     title = {Monoclinic optically active absorbing crystals of class 2},
     journal = {Problemy fiziki, matematiki i tehniki},
     pages = {38--44},
     publisher = {mathdoc},
     number = {4},
     year = {2011},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/PFMT_2011_4_a7/}
}
TY  - JOUR
AU  - A. F. Konstantinova
AU  - T. G. Golovina
AU  - E. A. Evdischenko
AU  - B. V. Nabatov
AU  - K. K. Konstantinov
TI  - Monoclinic optically active absorbing crystals of class 2
JO  - Problemy fiziki, matematiki i tehniki
PY  - 2011
SP  - 38
EP  - 44
IS  - 4
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/PFMT_2011_4_a7/
LA  - ru
ID  - PFMT_2011_4_a7
ER  - 
%0 Journal Article
%A A. F. Konstantinova
%A T. G. Golovina
%A E. A. Evdischenko
%A B. V. Nabatov
%A K. K. Konstantinov
%T Monoclinic optically active absorbing crystals of class 2
%J Problemy fiziki, matematiki i tehniki
%D 2011
%P 38-44
%N 4
%I mathdoc
%U http://geodesic.mathdoc.fr/item/PFMT_2011_4_a7/
%G ru
%F PFMT_2011_4_a7
A. F. Konstantinova; T. G. Golovina; E. A. Evdischenko; B. V. Nabatov; K. K. Konstantinov. Monoclinic optically active absorbing crystals of class 2. Problemy fiziki, matematiki i tehniki, no. 4 (2011), pp. 38-44. http://geodesic.mathdoc.fr/item/PFMT_2011_4_a7/

[1] F. I. Fedorov, Optika anizotropnykh sred, Iz-vo AN BSSR, Minsk, 1958, 380 pp.

[2] A. F. Konstantinova i dr., “Osobennosti proyavleniya opticheskoi aktivnosti v pogloschayuschikh kristallakh”, Kristallografiya, 21:6 (1976), 1108–1112

[3] A. F. Konstantinova, “Razvitie issledovanii opticheskoi aktivnosti kristallov v Institute kristallografii RAN”, Problemy fiziki, matematiki i tekhniki, 2011, no. 2 (7), 75–89

[4] A. F. Konstantinova i dr., Opticheskie svoistva kristallov, Nauka i tekhnika, Minsk, 1995, 304 pp.

[5] K. A. Kaldybaev, A. F. Konstantinova, Z. B. Perekalina, Girotropiya odnoosnykh pogloschayuschikh kristallov, Izd-vo «Institut sotsialno-ekonomicheskikh i proizvodstvenno-ekologicheskikh problem investirovaniya», M., 2000, 294 pp.

[6] A. I. Okorochkov, A. F. Konstantinova, “Sobstvennye volny v girotropnykh pogloschayuschikh kristallakh rombicheskoi singonii”, Kristallografiya, 29:5 (1984), 841–848

[7] A. F. Konstantinova i dr., “Osobennosti rasprostraneniya sveta v opticheski aktivnykh pogloschayuschikh kristallakh rombicheskoi singonii”, Kristallografiya, 56:3 (2011), 412–417

[8] B. V. Bokut, Elektromagnitnye volny v opticheski aktivnykh i nelineinykh kristallakh, Dis. ... d-ra fiz.-mat. nauk, Minsk, 1972, 270 pp.

[9] A. F. Konstantinova i dr., “Ispolzovanie sovremennykh matematicheskikh paketov dlya tochnogo resheniya zadach o rasprostranenii sveta v anizotropnykh sloistykh sredakh. II: Opticheski aktivnye kristally”, Kristallografiya, 47:5 (2002), 879–887

[10] F. I. Fedorov, Teoriya girotropii, Nauka i tekhnika, Minsk, 1976, 456 pp.

[11] N. E. Kochin, Vektornoe ischislenie i nachala tenzornogo ischisleniya, Nauka, M., 1965, 428 pp.

[12] A. M. Goncharenko, Issledovanie opticheskikh svoistv pogloschayuschikh kristallov na osnove invariantnogo metoda, Dis. ... kand. fiz.-mat. nauk, Minsk, 1960, 159 pp.