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采用超低膨胀法布里-珀罗腔改善Nd:YAP激光器的强度噪声和频率稳定性。

Improvement of the intensity noise and frequency stabilization of Nd:YAP laser with an ultra-low expansion Fabry-Perot cavity.

作者信息

Yu Juan, Qin Yue, Yan Zhihui, Lu Huadong, Jia Xiaojun

出版信息

Opt Express. 2019 Feb 4;27(3):3247-3254. doi: 10.1364/OE.27.003247.

Abstract

Continuous-wave, single-frequency, solid-state lasers with long-term frequency stability and low-intensity noise are an essential resource to generate squeezed and entangled states of light. In order to obtain the stable, nonclassical states of light, the frequency of the laser has to be stabilized with a stable reference. Due to the zero expansion property at a certain temperature, an ultra-low expansion (ULE) Fabry-Perot (F-P) cavity with a high finesse can be used as one of the best candidates of the frequency reference. We perform a detailed analysis of an extraordinarily high-frequency stability and ultra-low-intensity noise laser based on an improved cascade Pound-Drever-Hall frequency stabilization to a ULE F-P cavity. The frequency drift of the laser is suppressed to 7.72 MHz in 4 hours, and the noise level of the laser is simultaneously reduced to the quantum noise limit in the frequency below 300 kHz, which provides the possibility for the direct generation of a stable, high-level squeezed state in a lower-frequency region.

摘要

具有长期频率稳定性和低强度噪声的连续波、单频固态激光器是产生光的压缩态和纠缠态的重要资源。为了获得稳定的非经典光态,激光器的频率必须通过稳定的参考进行稳定。由于在特定温度下的零膨胀特性,具有高精细度的超低膨胀(ULE)法布里-珀罗(F-P)腔可作为频率参考的最佳候选之一。我们基于对ULE F-P腔的改进级联庞德-德弗-霍尔频率稳定技术,对具有极高频率稳定性和超低强度噪声的激光器进行了详细分析。激光器的频率漂移在4小时内被抑制到7.72 MHz,并且在低于300 kHz的频率下,激光器的噪声水平同时降低到量子噪声极限,这为在低频区域直接产生稳定的高电平压缩态提供了可能性。

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