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Long Wavelength Infrared (LWIR) AOTF and AOM Using Hg_2Br_2 Crystals

机译:使用HG_2BR_2晶体的长波长红外(LWIR)AOTF和AOM

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Acousto-optic devices were designed and fabricated using high quality single crystals of mercurous halide (Hg_2X_2) that were grown by physical vapor transport method (PVT). The orientation and the crystalline quality of the grown crystals were determined using high resolution x-ray diffraction (HRXRD) technique. The full width at half maximum (FWHM) of the grown mercurous bromide (Hg_2Br_2) crystals was measured to be 0.13 degrees for (004) reflection, which is the best that has been achieved so far for PVT grown mercurous halide single crystals. The extended defects of the crystals were also analyzed using high resolution x-ray diffraction topography. Preliminary studies were carried out to evaluate the performance of the crystals on acousto-optic modulator (AOM) and acousto-optic tunable filter (AOTF) applications. The results indicate the grown mercurous halide crystals are excellent materials for acousto-optic modulator as well as acousto-optic tunable filter device fabrications. The diffraction efficiencies of the fabricated AOM device with 1152 and 1523nm wavelength lasers polarizing parallel to the acoustic wave were found to be 35% and 28%, respectively. The diffraction efficiencies of the fabricated AOTF device with 10600 nm wavelength laser found to be 26%.
机译:使用由物理蒸汽传输方法(PVT)生长的含氟卤化物(HG_2X_2)的高质量单晶设计和制造了声光器件。使用高分辨率X射线衍射(HRXRD)技术测定生长晶体的取向和晶体质量。测量生长的杂色溴(HG_2BR_2)晶体的半最大(FWHM)的全宽度为0.13度(004)反射,这是迄今为止已经实现的最佳PVT生长亚胺卤化汞单晶。还使用高分辨率X射线衍射形貌分析晶体的延长缺陷。进行了初步研究以评估晶体对声光调制器(AOM)和声光可调滤波器(AOTF)应用的性能的性能。结果表明,生长的亚氟锭晶体是声光调制器的优异材料以及声光可调过滤装置的制造。发现具有1152和1523nm波长激光器的制造的AOM器件的衍射效率分别偏振的波长激光器分别为35%和28%。具有10600nm波长激光器的制造AOTF器件的衍射效率为26%。

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