Properties of oxide nonlinear crystals in the wavelength range over 600 $\mu$m
Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika, Tome 15 (2022) no. 6, pp. 724-729.

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

Absorption coefficients and refractive index components of polyatomic oxide nonlinear crystals LBO, $\beta$-BBO, and LB4 are determined in the THz range. The possibility of creating of highly efficient radiation sources operating in the wavelengths range over 600 $\mu$m is shown.
Keywords: nonlinear crystal, optical properties, temperature dispersion.
Mots-clés : sub-THz range, THz range
@article{JSFU_2022_15_6_a5,
     author = {Dmitrii M. Lubenko and Dmitry M. Ezhov and Valery A. Svetlichnyi and Yury M. Andreev},
     title = {Properties of oxide nonlinear crystals in the wavelength range over 600 $\mu$m},
     journal = {\v{Z}urnal Sibirskogo federalʹnogo universiteta. Matematika i fizika},
     pages = {724--729},
     publisher = {mathdoc},
     volume = {15},
     number = {6},
     year = {2022},
     language = {en},
     url = {http://geodesic.mathdoc.fr/item/JSFU_2022_15_6_a5/}
}
TY  - JOUR
AU  - Dmitrii M. Lubenko
AU  - Dmitry M. Ezhov
AU  - Valery A. Svetlichnyi
AU  - Yury M. Andreev
TI  - Properties of oxide nonlinear crystals in the wavelength range over 600 $\mu$m
JO  - Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika
PY  - 2022
SP  - 724
EP  - 729
VL  - 15
IS  - 6
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/JSFU_2022_15_6_a5/
LA  - en
ID  - JSFU_2022_15_6_a5
ER  - 
%0 Journal Article
%A Dmitrii M. Lubenko
%A Dmitry M. Ezhov
%A Valery A. Svetlichnyi
%A Yury M. Andreev
%T Properties of oxide nonlinear crystals in the wavelength range over 600 $\mu$m
%J Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika
%D 2022
%P 724-729
%V 15
%N 6
%I mathdoc
%U http://geodesic.mathdoc.fr/item/JSFU_2022_15_6_a5/
%G en
%F JSFU_2022_15_6_a5
Dmitrii M. Lubenko; Dmitry M. Ezhov; Valery A. Svetlichnyi; Yury M. Andreev. Properties of oxide nonlinear crystals in the wavelength range over 600 $\mu$m. Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika, Tome 15 (2022) no. 6, pp. 724-729. http://geodesic.mathdoc.fr/item/JSFU_2022_15_6_a5/

[1] M. Naftaly, N. Vieweg, A. Deninger, “Industrial Applications of Terahertz Sensing: State of Play”, Sensors, 19:19 (2019), 4203 | DOI

[2] G.K. Kitaeva, “Terahertz generation by means of optical lasers”, Laser Phys. Lett., 5:8 (2008), 559–576 | DOI

[3] D.-W. Chen, J.T. Lin, “Temperature-tuned phase-matching properties of LiB3O5 for Ti: sapphire laser frequency doubling”, IEEE J. Quant. Electr., 29:2 (1993), 307–310 | DOI

[4] K. Kato, “Second-harmonic generation to 2048 Å in $\beta$-BaB2O4”, IEEE J. Quant. Electr., 22:7 (1986), 1013–1014 | DOI

[5] T. Sugawara, R. Komatsu, S. Uda, “Linear and nonlinear optical properties of lithium tetraborate”, Solid State Communications, 107:5 (1998), 233–237 | DOI

[6] V. Dmitriev, G. Gurzadyan, D. Nikogosyan, Handbook of Nonlinear Optical Crystals, 64, 1999

[7] D.M. Lubenko, V.F. Losev, Yu.M. Andreev, D.M. Ezhov, “Using Oxide Nonlinear Crystals to Convert Frequencies to the THz Range”, Bulletin of the Russian Academy of Sciences: Physics, 86:7 (2022), 930–935 | DOI

[8] D.N. Nikogosyan, “Lithium triborate (LBO)”, Appl. Phys. A Solids Surfaces, 58:3 (1994), 181–190 | DOI

[9] N. Waasem, S. Fieberg, J. Hauser et al., “Photoacoustic absorption spectrometer for highly transparent dielectrics with parts-per-million sensitivity”, Rev. Sci. Instrum., 84:2 (2013), 023109 | DOI

[10] Yu.M. Andreev, A.E. Kokh, K.A. Kokh et al., “Observation of a different birefringence order at optical and THz frequencies in LBO crystal”, Opt. Mater. (Amst.), 66 (2017), 94–97 | DOI

[11] A. Kokh, N. Kononova, G. Mennerat et al., “Growth of high quality large size LBO crystals for high energy second harmonic generation”, Journal of Crystal Growth, 312 (2010), 1774–1778 | DOI

[12] Y. Tang, Y. Cui, M.H. Dunn, “Thermal dependence of the principal refractive indices of lithium triborate”, J. Opt. Soc. Am. B, 12:4 (1995), 638–643 | DOI

[13] A. Mamrashev, F. Minakov, N. Nikolaev, V. Antsygin, “Terahertz Time-Domain Polarimetry for Principal Optical Axes of Anisotropic Crystals”, Photonics, 8:6 (2021), 213 | DOI

[14] A.A. Mamrashev, N.A. Nikolaev, S.A. Kuznetsov, A.V. Gelfand, “Broadband metal-grid polarizers on polymeric films for terahertz applications”, AIP Conference Proceedings, 2020, no. 1, 020083 | DOI

[15] L. Isaenko, A. Yelisseyev, S. Lobanov et al., “Growth and properties of LiGaX2 (X = S, Se, Te) single crystals for nonlinear optical applications in the mid-IR”, Cryst. Res. Technol., 38:3-5 (2003), 379–387 | DOI

[16] D.N. Nikogosyan, Nonlinear Optical Crystals: A Complete Survey, 2005