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A Comparison between Two Heterodyne Light Sources Using Different Electro-Optic Modulators for Optical Temperature Measurements at Visible Wavelengths

机译:使用不同光电调制器的两个外差光源在可见波长下的光学温度测量的比较

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In this paper we have successfully demonstrated a z-propagating Zn-indiffused lithium niobate electro-optic modulator used for optical heterodyne interferometry. Compared to a commercial buck-type electro-optic modulator, the proposed waveguide-type modulator has a lower driving voltage and smaller phase variation while measuring visible wavelengths of 532 nm and 632.8 nm. We also demonstrate an optical temperature measurement system using a homemade modulator. The results show that the measurement sensitivities are almost the same values of 25 deg/°C for both the homemade and the buck-type modulators for a sensing light with a wavelength of 632.8 nm. Because photorefractive impacts are essential in the buck-type modulator at a wavelength of 532 nm, it is difficult to obtain reliable phase measurements, whereas the stable phase operation of the homemade one allows the measurement sensitivity to be improved up to 30 deg/°C with the best measurement resolution at about 0.07 °C for 532 nm.
机译:在本文中,我们成功地证明了用于光学外差干涉测量的z传播的Zn扩散的铌酸锂电光调制器。与商用降压型电光调制器相比,提出的波导型调制器在测量532 nm和632.8 nm的可见波长时具有较低的驱动电压和较小的相位变化。我们还演示了使用自制调制器的光学温度测量系统。结果表明,对于波长为632.8 nm的感测光,自制和降压型调制器的测量灵敏度几乎都等于25℃/℃。由于在532 nm波长的降压型调制器中光折变影响是必不可少的,因此很难获得可靠的相位测量,而自制的稳定相位操作可以使测量灵敏度提高到30 deg /°C。在约0.07°C的532 nm下具有最佳测量分辨率。

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