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A compact and efficient hyper coherent light source of visible violet laser diode based on Pound-Drever-Hall technique

机译:基于磅 - 防治厅技术的可见紫光激光二极管的紧凑型高效的超光源

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In the present work, we have developed an efficient and well stablized hyper coherent diode laser light source as compact as even portable using commercially available visible 400 nm band laser diodes. The attained coherence of the present system can always be controlled at the best condition indifferent to changes in its settled environmental conditions by applying Pound-Drever-Hall technique in which the frequency of a 160mW type 405nm GaN violet laser diode is locked to a reference Fabry-Perot cavity by negative electrical feedback for the injection current of the laser diode based on FM sideband technique. In addition to this frequency stabilization system, we have also realized a stability evaluation system that can measure the Allan variance of the frequency fluctuations of our frequency stabilized laser source in real-time basis by using simple devices of a portable computer and a digital signal processing unit. As a result, we have accomplished a compact and efficient hyper coherent laser system which can always perform its optimum conditions even if the environmental conditions around the laser are to be dynamically changed when used in a field basis. The attained values of power spectral density (PSD) of FM noise calculated from the error signals of our system under controlled condition were better by about 1~2 orders than typical values of free-running conditions in the fourier frequency domain from 100Hz to 300kHz. The best achieved value of PSD was about 2.56×107 [Hz2/Hz] in the fourier frequency domain from 100Hz to 1kHz, while as for the Allan variance as another measure of frequency stability, the achieved value of the minimum square root of Allan variance was 3.46×10-11 in a 400nm type violet laser diode at integration time of 10 ms, which has been well comparable to the hyper coherent condition for the laser diode light sources.
机译:在本作工作中,我们已经开发了一种高效且稳健的超相干二极管激光光源,甚至可以使用市售的可见400nm频带激光二极管等于便携式。本系统的实现连贯性可以始终控制在其稳定的环境条件变化的最佳条件下,通过应用160MW型405nm GaN紫光激光二极管的频率锁定到参考法布里基于FM边带技术,通过对激光二极管的喷射电流的负电反馈来实现腔。除了这种频率稳定系统之外,我们还实现了一种稳定性评估系统,可以通过使用便携式计算机的简单设备和数字信号处理来测量我们的频率稳定激光源的频率波动的频率波动的allan方差单元。结果,我们已经完成了一种紧凑而有效的超相干激光系统,即使在以场基于使用时,即使在使用激光周围的环境条件,也可以始终执行其最佳条件。从受控条件下的系统的误差信号计算的FM噪声的功率谱密度(PSD)的达到值优于傅立叶频域中的自由运行条件的典型值,从100Hz到300kHz的典型值更好。 PSD的最佳取得的价值在傅里叶频域中的约2.56×107 [Hz2 / Hz],从100Hz到1KHz,而作为Allan方差作为另一个频率稳定性,实现了Allan方差最小平方根的值在10ms的集成时间为400nm型紫色激光二极管中为3.46×10-11,这一直与激光二极管光源的超相干条件相当。

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