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Characterization of the beam shaper and Fourier transform system in a prototype of the acousto-optical spectrometer for Mexican Large Millimeter Telescope

机译:墨西哥大毫米波望远镜声光光谱仪原型中的光束整形器和傅立叶变换系统的表征

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Two optically matched by each other subsystems related to an advanced prototype of acousto-optical spectrometer for radio-astronomy are analyzed in frames of this work. The main peculiarity of the spectrometer's prototype is exploiting a large-aperture tellurium dioxide cell in the regime of anomalous light scattering by acoustic waves, so that just this circumstance determines the majority of technical requirements to both the subsystems under consideration and their potential performances. This is why the initial section is devoted to describing basic properties inherent in the chosen regime of acousto-optical interaction. Then, within characterizing a multi-prism beam shaper, we restrict ourselves here by the case of linear state of the incident light beam polarization. Broadly speaking, such a restriction does not provide the highest performance data of spectrometer, in particular, the most efficient anomalous light scattering in tellurium dioxide crystal, but similar restriction is exactly in a line with the to-day's level of our progress. The characterization of Fourier transform subsystem is directed, of course, to achieving the resolution corresponding as much as possible to theoretically desirable value, namely, to a pair of the CCD-pixels for each individual resolvable spot. The obtained theoretical and preliminary experimental results are presented and discussed.
机译:在这项工作的框架中,分析了与射电天文声光光谱仪的高级原型相关的两个彼此光学匹配的子系统。光谱仪原型的主要特点是在声波的异常光散射情况下利用了大孔径的二氧化碲电池,因此仅此情况就决定了所考虑的子系统的大多数技术要求及其潜在性能。这就是为什么第一部分专门描述声光相互作用所选机制固有的基本特性的原因。然后,在表征多棱镜光束整形器的过程中,我们在这里通过入射光束偏振的线性状态限制自己。从广义上讲,这样的限制并不能提供光谱仪的最高性能数据,特别是不能最有效地在二氧化碲晶体中散射异常光,但是类似的限制恰恰符合我们目前的发展水平。当然,傅里叶变换子系统的表征是针对获得尽可能与理论上理想的值相对应的分辨率,即针对每个单独的可分辨光斑的一对CCD像素。介绍并讨论了获得的理论和初步实验结果。

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