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Generation of tunable laser sidebands in the far-infrared region

机译:在远红外区域产生可调谐激光器边带

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摘要

Continuously tunable laser sidebands have been generated by mixing radiation from an optically pumped far infrared (FIR) molecular laser, operated at 693, 762, 1627, and 1839 GHz, with that from millimeter‐wave klystrons in a Schottky‐barrier diode. An enhancement in conversion efficiency over similar systems reported previously is obtained by using a Michelson interferometer to separate the sidebands from the carrier and by placing the Schottky diode in an open structure corner cube mount. With 4 mW of laser power at 693 and 762 GHz the sideband power was measured to be 3.0 μW. This is at least an order of magnitude better than the previously reported results. At higher frequencies, 22 mW of 1627‐GHz laser power produced about 2.5 μW of sideband output, while 3mW of 1839‐GHz laser power generated about 100 nW of sideband radiation. The lower efficiency at the higher frequencies is due primarily to the mismatch between the laser radiation and the fixed‐length diode antenna. To demonstrate the tunability of the generated far‐infrared radiation, the laser sidebands were swept through absorption lines of HDO and H_2CO near 600 and 800 GHz. The absorption signals were easily seen, using either video or lock‐in detection techniques.
机译:通过将工作在693、762、1627和1839 GHz的光泵浦远红外(FIR)分子激光器的辐射与毫米波速调管的辐射混合在肖特基势垒二极管中,可以产生连续可调的激光器边带。通过使用迈克尔逊干涉仪将边带与载波分离,以及将肖特基二极管放置在开放结构的角锥安装架中,可以实现比以前报道的类似系统更高的转换效率。在693和762 GHz处有4 mW的激光功率时,测得的边带功率为3.0μW。这比先前报告的结果至少好一个数量级。在更高的频率下,22mW的1627-GHz激光功率产生约2.5μW的边带输出,而3mW的1839-GHz激光功率产生约100nW的边带辐射。较高频率下的较低效率主要是由于激光辐射与定长二极管天线之间的不匹配。为了证明产生的远红外辐射的可调谐性,激光边带通过HDO和H_2CO在600和800 GHz附近的吸收线扫过。使用视频或锁定检测技术可以轻松看到吸收信号。

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