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首页> 外文期刊>Applied Physics B: Lasers and Optics >Frequency stabilization of blue extended cavity diode lasers by external cavity optical feedback
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Frequency stabilization of blue extended cavity diode lasers by external cavity optical feedback

机译:外腔光反馈对蓝色扩展腔二极管激光器的频率稳定

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摘要

Optical feedback from a high-finesse V-resonator, developed for this study, results in efficient coupling with an extended cavity diode laser, stabilizing its emission frequency and strongly decreasing the laser linewidth. This in turn enhances resonator output power, thus increasing the signal-to-noise ratio when used for the detection of gas phase species by absorption spectroscopy. This effect was directly measured by heterodyning two extended cavity diode lasers at a wavelength of 409 nm with and without the influence of optical feedback from a high-finesse V-resonator. The heterodyne signal of freely running lasers is composed of a set of sharp peaks whose envelope shows a width on the order of 4.5 MHz at a sweep rate of 80 MHz/0.8 s, leading to a laser linewidth of 3 MHz. Optical feedback from the high-finesse V-resonator reduces the heterodyne signal to a single peak with a mean width of 10 kHz, leading to a laser linewidth of 7 kHz. This is the lowest value of linewidth, reported thus far, for diode lasers operating in this wavelength region.
机译:为这项研究而开发的高精细V谐振器的光反馈可与扩展腔二极管激光器有效耦合,从而稳定其发射频率并大大减小了激光器的线宽。这继而提高了谐振器的输出功率,从而在用于通过吸收光谱法检测气相物质时提高了信噪比。该效果是通过在不具有来自高端V型谐振器的光反馈的影响的情况下,通过使两个波长为409 nm的扩展腔二极管激光器进行异质测量而直接测量的。自由运行的激光器的外差信号由一组尖峰组成,这些峰的包络线以80 MHz / 0.8 s的扫描速率显示4.5 MHz量级的宽度,从而导致激光线宽为3 MHz。来自高端V形谐振器的光反馈将外差信号减小到平均宽度为10 kHz的单个峰值,从而导致激光线宽为7 kHz。这是迄今为止在该波长范围内工作的二极管激光器的线宽的最低值。

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