Absorption spectra of single-crystal and optical ceramics of fluorite in terahertz and infrared ranges

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Abstract

The transmission spectra of a single crystal, artificial and natural fluorite ceramics were recorded in the areas of material transparency in THz and the average IR range at room temperature. In the region of high absorption, the reflectance spectra were measured. Differences in the optical characteristics of a single crystal and optical ceramics are insignificant.

About the authors

G. A. Komandin

General Physics Institute of the Russian Academy of Sciences

Email: ppfedorov@yandex.ru
Russian Federation, 38, Vavilov street, Moscow, 119991

V. S. Nozdrin

General Physics Institute of the Russian Academy of Sciences

Email: ppfedorov@yandex.ru
Russian Federation, 38, Vavilov street, Moscow, 119991

P. P. Fedorov

General Physics Institute of the Russian Academy of Sciences

Author for correspondence.
Email: ppfedorov@yandex.ru
Russian Federation, 38, Vavilov street, Moscow, 119991

V. V. Osiko

General Physics Institute of the Russian Academy of Sciences

Email: ppfedorov@yandex.ru

Academician of the Russian Academy of Sciences

Russian Federation, 38, Vavilov street, Moscow, 119991

References

  1. Акчурин М. Ш., Гайнутдинов Р. В., Смолянский П. Л., Федоров П. П. // ДАН. 2006. Т. 406. № 2. С. 180-182.
  2. Попов П. А., Дукельский К. В., Миронов И. А. и др. // ДАН. 2007. Т. 412. № 2. С. 185-187.
  3. Палашов О. В., Хазанов Е. А., Мухин И. Б. и др. // Квант. электроника. 2007. Т. 37. № 1. С. 27-28.
  4. Хазанов E. Н., Таранов А. В., Федоров П. П. и др. // ДАН. 2009. Т. 424. № 3. С. 326-328.
  5. Палашов О. В., Хазанов Е. А., Мухин И. Б. и др. // Квант. электроника. 2009. Т. 39. № 10. С. 943-947.
  6. Fedorov P. P. Fluoride Laser Ceramics. In: Handbook on Solid-State Lasers: Materials, Systems and Applications. Oxford; Cambridge; Philadelphia; New Delhi: Woodhead Publ., 2013. Iss. 35. P. 82-109. ISBN: 0857092723. doi: 10.1533/9780857097507.1.82.
  7. Командин Г. А., Гавдуш А. А., Гончаров Ю. Г. и др. // Оптика и спектроскопия. 2019. Т. 126. № 5.
  8. Komandin G. A., Zhukova E. S., Torgashev V. I., et al. // J. Appl. Phys. 2013. V. 114. 024102. DOI: 10.1063/ 1.4813496.
  9. Lyddane R. H., Herzfeld K. F. Lattice Vibrations in Polar Crystals // Phys. Rev. 1938. V. 54. Р. 846-861.
  10. Lyddane R. H., Sachs R. G., Teller E. On the Polar Vibrations of Alkali Halides // Phys. Rev. 1941. V. 59. P. 673-676.
  11. Kurosawa T. Polarization Waves in Solids // J. Phys. Soc. Jap. 1961. V. 16. P. 1298-1308.
  12. Ganesan S., Srinivasan R. Lattice Dynamics of Calcium Fluoride. Patr I. Lyddane, Sachs, Teller Formula, Diffuse X ray Scattering, and Specific Heat // Canad. J. Phys. 1962. V. 40. P. 74-90.
  13. Zernik W. Theory of Optical Properties of Fluorite Crystals // Rev. Modern Phys. 1967. V. 39. P. 432-439.
  14. Kaizer W., Spitzer W. G., Kaizer R. H., Howarth L. E. Infrared Properties of CaF2, SrF2, and BaF2 // Phys. Rev. 1962. V. 127. P. 1950-1954.
  15. Карасик А. Я., Басиев T. T., Boлков A. A., Koмaндин Г. A. // Оптика и спектроскопия. 1998. Т. 85. № 4. С. 601-604.

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