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Frequency stabilization of an optically pumped far-infrared laser to the harmonic of a microwave synthesizer

机译:光泵浦远红外激光器对微波合成器谐波的频率稳定

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Measurements of the frequency stability of a far-infrared molecular laser have been made by mixing the harmonic of an ultrastable microwave source with a portion of the laser output signal in a terahertz (THz) Schottky diode balanced mixer. A 3 GHz difference-frequency signal was used in a frequency discriminator circuit to lock the laser to the microwave source. Comparisons of the short-and long-term laser frequency stability under free-running and locked conditions show a significant improvement with locking. Short-term frequency jitter was reduced by an order of magnitude, from approximately 40 to 4 kHz, and long-term drift was reduced by more than three orders of magnitude, from approximately 250 kHz to 80 Hz. The results, enabled by the efficient Schottky diode balanced mixer downconverter, demonstrate that ultrastable microwave-based frequency stabilization of THz optically pumped lasers (OPLs) will now be possible at frequencies extending well above 4.0 THz. (C) 2015 Optical Society of America
机译:通过在太赫兹(THz)肖特基二极管平衡混频器中将超稳定微波源的谐波与一部分激光输出信号混合在一起,可以测量远红外分子激光器的频率稳定性。在鉴频器电路中使用3 GHz差频信号将激光器锁定到微波源。在自由运行和锁定条件下,短期和长期激光频率稳定性的比较表明,锁定具有显着改善。短期频率抖动降低了一个数量级,从大约40 kHz降低到4 kHz,长期漂移降低了三个数量级以上,从大约250 kHz到80 Hz。通过有效的肖特基二极管平衡混频器下变频器实现的结果表明,现在,在远远超过4.0 THz的频率下,将有可能对THz光泵浦激光器(OPL)进行超稳定的基于微波的频率稳定。 (C)2015年美国眼镜学会

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