Results of experimental studies of laser destruction of crystals for optical waveguides of the IR spectrum

Authors

  • V. G. Shemanin Branch of the Belgorod State Technological University named after V. G. Shukhov in Novorossiysk
  • O. V. Mkrtychev Branch of the Belgorod State Technological University named after V. G. Shukhov in Novorossiysk

Keywords:

laser damage, optical materials, IR waveguides

Abstract

The results of experimental studies of laser destruction of the surfaces of crystals of the AgClxBry type under the action of laser pulses with a duration of 20 ns and 300 μs with a maximum energy of up to 100 and 250 mJ, respectively, are presented.

References

Zhukova L. V., Korsakov A. S., L’vov A. E., Salimgareev D. D. Waveduide fibers for the middle IR spectrum. Ekaterinburg: UMC UPI Publ. 2016, 247 p.

Atkarskaya AB, Mkrtychev OV, Privalov VE, Shemanin VG. Laser ablation of the glass nanocomposites studies. Optical Memory and Neural Networks (Information Optics) 2014;23:265–70.

Privalov VE, Shemanin VG, Mkrtychev OV. Method of Assessing the Optical Resistance of an Irradiated Surface Under Laser Ablation. Meas Tech 2018;61:694–8.

Shemanin V G and Mkrtychev O V 2018 Technical Physics 63 623–627.

Shemanin V G, Kolpakova E V, Atkarskaya A B and Mkrtychev O V. Nanosystems: Physics, Chemistry, Mathematics 2019 10 632–636.

Mkrtychev O V, Privalov V E, Shemanin V G and Shevtsov Y V 2020 Optical Memory and Neural Networks (Information Optics) 29 142–146.

Соболев С. Л. Локально-неравновесные модели процессов переноса // УФН. 1997. Т. 167, № 10. С. 1095–1106.

Анисимов С. И., Лукьянчук Б. С. Избранные задачи теории лазерной абляции // УФН. 2002. Т. 172, № 3, С. 301–333.

Вейко В. П., Либенсон М. Н., Червяков Г. Г., Яковлев Е. Б. Взаимодействие лазерного излучения с веществом. Силовая оптика / Под ред. В. И. Конова. М.: ФИЗМАТЛИТ, 2008. 312 с.

Abraham F. F., Broughton J. Q. Pulsed Melting of Silicon (111) and (100) Surfaces Simulated by Molecular Dynamics // Phys. Rev. Lett. 1986.

Zhigilei V., Garrison B. J. Pressure Waves in Microscopic Simulations of Laser Ablation // Materials Research Society (MRS) Proc. V. 538. Cambridge University Press, 1998. P. 491–496.

Etcheverry J. I., Mesaros M. Molecular Dynamics Simulation of the Production of Acoustic Waves by Pulsed Laser Irradiation // Phys. Rev. B. 1999. V. 60, No. 13. P. 9430–9434.

Zhigilei L. V., Garrison B. J. Microscopic Mechanisms of Laser Ablation of Organic Solids in the Thermal and Stress Confinement Irradiation Regimes // J. Appl. Phys. 2000. V. 88, No. 3. P. 1281–1298.

Фокин В. Б. Континуально-атомистическая модель и ее применение для численного расчета воздействия одиночного и двойного фемтосекундного лазерного импулься на металлы. Дис. канд. ... физ.-мат. наук. М., 2017.

K. Bronnikov, A. Wolf, S. Yakushin, et al, Opt. Express 27, 38421 (2019).

K. Bronnikov, A. Dostovalov, V. Terentyev, et al, Appl. Phys. Lett. 119, 211106 (2021).

Yin F., Ye X., Yao H., Wei P., Wang X., Cong J., Tong Y. Surface forming criteria of Ti6AL-4V titanium alloy under laser loading // Applied Sciences. 2021. Vol. 11. 5406.

Inogamov N.A., Zhakhovskii V.V., Khokhlov V.A. Jet formation in spallation of metal film from substrate under action of femtosecond laser pulse // Journal of Experimental and Theoretical Physics. 2015. Vol. 120.

Ионин А. А., Кудряшов С. И., Самохин А. А. Абляция поверхности материалов под действием ультракоротких лазерных импульсов // Успехи физических наук. 2017. Т. 187. № 2.

Локтионов Е. Ю., Овчинников А. В., Протасов Ю. Ю. и др. О спектральноэнергетической эффективности фемтосекундной лазерной абляции полимеров. Доклады Академии наук. 2010. Т. 433. № 6.

Published

2022-11-30

How to Cite

Шеманин, В. Г., & Мкртычев, О. В. (2022). Results of experimental studies of laser destruction of crystals for optical waveguides of the IR spectrum. Lasers. Measurements. Information, 2(3), 034-037. Retrieved from http://lasers-measurement-information.ru/ojs/index.php/laser/article/view/45

Issue

Section

Interaction of laser radiation with matter