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Pisma v Zhurnal Tekhnicheskoi Fiziki, 2014 Volume 40, Issue 14, Pages 53–62 (Mi pjtf8209)

This article is cited in 1 paper

Effect of laser-radiation polarization on the nonlinear scattering of light in nanodiamond suspensions

G. M. Mikheevabc, V. V. Vanyukovabc, T. N. Mogilevaabc, A. P. Puzyrabc, V. S. Bondarabc, Yu. P. Svirkoabc

a Institute of Mechanics, Ural Branch of RAS, Izhevsk
b University of Eastern Finland, Kuopio
c Institute of Biophysics Siberian Branch of RAS, Krasnoyarsk, Akademgorodok

Abstract: The effect of laser radiation polarization on the nonlinear scattering of light in aqueous suspensions of detonation nanodiamonds (DNDs) in a regime of optical power limiting (OPL) has been studied. It is established that the nonlinear transmission coefficient of DND suspension in the OPL regime in a field of nanosecond laser pulses with a wavelength of 532 nm is independent of the polarization of incident radiation. The nonlinear scattering of light observed at an angle of 90$^\circ$ in the plane perpendicular to the plane of polarization of the incident radiation depends on the polarization angle in accordance with a trigonometric law. It is shown that the ratio of the signals of scattered radiation for the vertical and horizontal polarizations exhibits nonmonotonic dependence on the laser-beam power density. The results are explained by the Rayleigh–Mie scattering and a change in the size of scattering centers as a result of the effect of a laser upon the DND suspension.

Received: 05.03.2014


 English version:
Technical Physics Letters, 2014, 40:7, 609–613

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