Инд. авторы: Andreev Y.M., Kokh A.E., Kokh K.A., Lanskii G.V., Litvinenko K., Mamrashev A.A., Molloy J.F., Murdin B., Naftaly M., Nikolaev N.A., Svetlichnyi V.A.
Заглавие: Observation of a different birefringence order at optical and THz frequencies in LBO crystal
Библ. ссылка: Andreev Y.M., Kokh A.E., Kokh K.A., Lanskii G.V., Litvinenko K., Mamrashev A.A., Molloy J.F., Murdin B., Naftaly M., Nikolaev N.A., Svetlichnyi V.A. Observation of a different birefringence order at optical and THz frequencies in LBO crystal // Optical Materials. - 2017. - Vol.66. - P.94-97. - ISSN 0925-3467. - EISSN 1873-1252.
Внешние системы: DOI: 10.1016/j.optmat.2017.01.031; РИНЦ: 29475885; SCOPUS: 2-s2.0-85011095668; WoS: 000400200000014;
Реферат: eng: THz optical properties of lithium borate (LBO) crystals were measured using time-domain spectroscopy (TDS). The LBO crystal samples were of high optical quality and were cut and polished along the 〈100〉, 〈010〉 and 〈001〉 axes. Two independent measurements were performed in order to confirm the reproducibility and consistency of results. The contradictions in the previously published data on the THz optical properties of LBO were clarified. It was shown that the birefringence order at THz frequencies is nz
Ключевые слова: Time domain spectroscopy; Terahertz generation; Optical qualities; Lithium triborate; Ionic polarizabilities; Independent measurement; Dispersion equations; Terahertz waves; Terahertz spectroscopy; Birefringence; Terahertz generation; Optical properties; Lithium triborate; Absorption co-efficient; Optical properties;
Издано: 2017
Физ. характеристика: с.94-97
Цитирование: 1. [1] Nikogosyan, D.N., Nonlinear Optical Crystals: a Complete Survey. 2005, Springer-Verlag, New York, 10.1007/b138685. 2. [2] Kato, K., Tunable UV generation to 0.2325 μm in LiB3O5. IEEE J. Quantum Electron. 26:7 (1990), 1173–1175, 10.1109/3.59655. 3. [3] Waasem, N., Fieberg, S., Hauser, J., Gomes, G., Haertle, D., Kühnemann, F., Buse, K., Photoacoustic absorption spectrometer for highly transparent dielectrics with parts-per-million sensitivity. Rev. Sci. Instrum., 84(2), 2013, 023109, 10.1063/1.4792724. 4. [4] Kokh, A., Kononova, N., Mennerat, G., Villeval, P., Durst, S., Lupinski, D., Vlezko, V., Kokh, K., Growth of high quality large size LBO crystals for high energy second harmonic generation. J. Cryst. Growth 312:10 (2010), 1774–1778, 10.1016/j.jcrysgro.2010.02.023. 5. [5] Furukawa, Y., Markgraf, S.A., Sato, M., Yoshida, H., Sasaki, T., Fujita, H., Yamanaka, T., Nakai, S., Investigation of the bulk laser damage of lithium triborate, LiB3O5, single crystals. Appl. Phys. Lett., 65(12), 1994, 1480, 10.1063/1.112018. 6. [6] Maslyuk, V.V., Bredow, T., Pfnür, H., Phonon spectra and heat capacity of Li2B4O7 and LiB3O5 crystals. Eur. Phys. J. B 42:4 (2004), 461–466, 10.1140/epjb/e2005-00003-1. 7. [7] Xia, H.R., Li, L.X., Yu, H., Dong, S.M., Wang, J.Y., Lu, Q.M., Ma, C.Q., Wang, X.N., Structure and the nonlinearity of lithium triborate studied by Raman and infrared reflectivity spectroscopy. J. Mater. Res. 16:12 (2001), 3464–3470, 10.1557/JMR.2001.0476. 8. [8] Antsygin, V.D., Mamrashev, A.A., Nikolaev, N.A., Potaturkin, O.I., Bekker, T.B., Solntsev, V.P., Optical properties of borate crystals in terahertz region. Opt. Commun. 309 (2013), 333–337, 10.1016/j.optcom.2013.08.014. 9. [9] Andreev, Y.M., Naftaly, M., Molloy, J.F., Kokh, A.E., Lanskii, G.V., Svetlichnyi, V.A., Losev, V.F., Kononova, N.G., Kokh, K.A., LBO: optical properties and potential for THz application. Laser Phys. Lett., 12(11), 2015, 115402, 10.1088/1612-2011/12/11/115402. 10. [10] Svetlichnyi, V.A., Naftaly, M., Molloy, J.F., Andreev, Y.M., Kokh, K.A., Lanskii, G.V., Kononova, N.G., Kokh, A.E., Comments on “Optical properties of borate crystals in the terahertz domain”. Opt. Commun. 365 (2016), 14–15, 10.1016/j.optcom.2015.11.046. 11. [11] Molloy, J.F., Naftaly, M., Dudley, R.A., Characterization of terahertz beam profile and propagation. IEEE J. Sel. Top. Quantum Electron., 19(1), 2013, 8401508, 10.1109/JSTQE.2012.2205668. 12. [12] Kokh, A., Vlezko, V., Kokh, K., Kononova, N., Villeval, P., Lupinski, D., Dynamic control over the heat field during LBO crystal growth by High temperature solution method. J. Cryst. Growth 360:1 (2012), 158–161, 10.1016/j.jcrysgro.2011.11.050. 13. [13] Naftaly, M., Terahertz Metrology. 2015, Artech House. 14. [14] Born, M., Wolf, E., Principles of Optics. 1980, Pergamon Press, Cambridge. 15. [15] Kasap, S.O., Principles of Electronic Materials and Devices. 2002, McGraw-Hill, New York.