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Characterization of photoelastic materials by combined Mach-Zehnder and conoscopic interferometry: Application to tetragonal lithium tetraborate crystals

机译:Mach-Zehnder和锥光干涉术相结合表征光弹性材料:在四方四硼酸锂晶体中的应用

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摘要

Mach-Zehnder and conoscopic interferometry are used to explore photoelastic properties of anisotropic crystal materials. In a number of cases an application of both techniques significantly improves an accuracy of piezooptic and photoelastic measurements. The performance of such combined approach is demonstrated on tetragonal lithium tetraborate (LTB) single crystals, as an example. Special attention is paid to methodological and metrological aspects, such as measurement accuracy and the quantitative error analysis of the resulting measurements. Performing the interferometric measurements for different geometries of piezooptic coupling the full sets of piezooptic and photoelastic tensor constants of LTB crystals have been determined. The acoustooptic efficiency, on the other hand, has been evaluated using the magnitudes of photoelastic constants derived from the piezooptical measurements. For the geometries with strong photoelastic coupling LTB demonstrates quite large acoustooptic performance with figure of merit value, M-2, achieving 2.12 x 10(-15) s(3)/kg. It is several times larger than that of strontium borate crystals, nowadays the best acoustooptic material in deep-ultraviolet spectral region.
机译:马赫曾德尔(Mach-Zehnder)和锥光干涉仪用于研究各向异性晶体材料的光弹性。在许多情况下,两种技术的应用都会显着提高压电和光弹性测量的精度。例如,在四方四硼酸锂(LTB)单晶上证明了这种组合方法的性能。要特别注意方法和计量方面的问题,例如测量精度和所得测量结果的定量误差分析。对压电耦合的不同几何形状进行干涉测量,已经确定了LTB晶体的全套压电和光弹性张量常数。另一方面,声光效率已使用从压电测量得到的光弹性常数的大小进行了评估。对于具有强光弹耦合的几何形状,LTB表现出相当大的声光性能,品质因数值为M-2,达到2.12 x 10(-15)s(3)/ kg。它比硼酸锶晶体大几倍,是当今深紫外光谱区域最好的声光材料。

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