Peculiarities of acousto-optic diffraction at circularly polarized acoustic waves. Determination of elasto-optic coefficients coupled with shear waves. Errata

IF 3.9 4区 物理与天体物理 0 OPTICS Ukrainian Journal of Physical Optics Pub Date : 2020-01-01 DOI:10.3116/16091833/21/4/201/2020
M. Kostyrko, I. Orykhivskyi, I. Skab, R. Vlokh
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引用次数: 1

Abstract

. We develop a new approach for determining some of elasto-optic coefficients ( p ij with i = 1…6 and j = 4, 5) basing on Dixon–Cohen method and acousto-optic diffraction at circularly polarized acoustic waves. Particular cases of crystals that belong to trigonal system and some symmetry groups of tetragonal and hexagonal systems are analyzed. We find that the effective elasto-optic coefficients are different for the alternative cases of diffractions at either right- or left-handed circularly polarized acoustic waves that propagate along Z axis in crystals. One can determine in this way the coefficients p 44 and p 45 at the anisotropic diffraction in the crystals belonging to point symmetry groups 4, 4/m, 4 , 6, 6/m and 6 . For the crystals belonging to symmetry groups 32, 3m and 3m , it is possible to determine the coefficients p 14 and p 44 respectively at the isotropic and anisotropic diffractions. Finally, for the crystals described by the groups 3 and 3 , one can determine separately the four coefficients p 44 , p 45 , p 25 and p 14 following from the anisotropic-diffraction data and the two coefficients p 14 and p 25 following from the isotropic-diffraction data.
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圆偏振声波声光衍射的特性。剪切波耦合弹性光学系数的测定。勘误表
. 基于Dixon-Cohen方法和圆极化声波声光衍射,提出了一种新的计算弹性光学系数(i = 1…6和j = 4,5)的方法。分析了属于三角形体系的晶体的特殊情况以及属于四边形和六边形体系的某些对称群。我们发现,在沿Z轴传播的左圆偏振声波和右圆偏振声波衍射的不同情况下,有效弹光学系数是不同的。可以用这种方法确定点对称群4、4/m、4、6、6/m和6的晶体各向异性衍射时的系数p44和p45。对于属于32、3m和3m对称群的晶体,可以在各向同性和各向异性衍射下分别确定p14和p44的系数。最后,对于3族和3族所描述的晶体,可以从各向异性衍射数据分别确定p44、p45、p25和p14四个系数,从各向同性衍射数据分别确定p14和p25两个系数。
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来源期刊
CiteScore
9.90
自引率
0.00%
发文量
20
审稿时长
>12 weeks
期刊介绍: “Ukrainian Journal of Physical Optics” contains original and review articles in the fields of crystal optics, piezo-, electro-, magneto- and acoustooptics, optical properties of solids and liquids in the course of phase transitions, nonlinear optics, holography, singular optics, laser physics, spectroscopy, biooptics, physical principles of operation of optoelectronic devices and systems, which need rapid publication. The journal was founded in 2000 by the Institute of Physical Optics of the Ministry of Education and Science of Ukraine.
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