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Acousto-optic tunable filter using double interaction for sidelobe reduction

机译:使用双重相互作用的声光可调滤波器,可减少旁瓣

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We present a bifrequency acousto-optic tunable filter (AOTF) for applications using polychromatic laser beams. The acousto-optic device is based on two successive anisotropic interactions in paratellurite: the first takes place with an acoustic shear wave tilted at 10 deg from the [110] axis, while the latter is provided by the acoustic shear wave propagating collinear to the [110] axis. It is then demonstrated that the side-lobes of the impulse response to optical wavelengths of such a bifrequency AOTF are greatly reduced. General expressions of operating frequencies, spectral bandwidths, and acoustic powers are derived. Numerical computations have been drawn for paratellurite. The bifrequency AOTF has been tested using a multiline beam radiated by an argon laser. According to the spectral power distribution of this polychromatic laser beam, the most critical configurations of wavelength filtration have been considered. Experimental results confirm the theoretical predictions.
机译:我们提出了使用多色激光束的双频声光可调滤波器(AOTF)。声光装置基于在星云中的两个连续的各向异性相互作用:第一个发生在与[110]轴倾斜10度的声切波上,而后者则是通过与[[]]轴共线传播的声切波提供的。 110]轴。然后证明了,对这种双频AOTF的光波长的脉冲响应的旁瓣大大减小了。得出工作频率,频谱带宽和声功率的一般表达式。已经对星云进行了数值计算。双频AOTF已使用由氩激光辐射的多线光束进行了测试。根据该多色激光束的光谱功率分布,已经考虑了最关键的波长过滤配置。实验结果证实了理论预测。

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