The kHz level stabilization of an intracavity doubled continuous wave optical parametric oscillator using Pound-Drever-Hall scheme

O. Mhibik, D. Paboeuf, C. Drag, F. Bretenaker
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引用次数: 1

Abstract

Quantum manipulation using the optical transition (3H4→1D2) of Pr3+ embedded in solid state host materials requires a visible source emitting at 606 nm with a linewidth at the kHz level [1]. In a previous work, we have reported the stabilization of a continuous wave intracavity frequency doubled singly resonant optical parametric oscillator (cw-SHG-SRO) by locking it onto the side of the transmission fringe of a medium finesse Fabry-Perot (FP) cavity [2]. In this scheme, the signal transmitted by the FP cavity was not only sensitive to any frequency fluctuation but also to any change in the source power, which can be misinterpreted as a frequency fluctuation.
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用庞德-德雷弗-霍尔方案稳定腔内双连续波光学参量振荡器的kHz电平
利用嵌入在固态主体材料中的Pr3+的光学跃迁(3H4→1D2)进行量子操纵需要一个发射波长为606 nm、线宽为kHz级[1]的可见源。在之前的工作中,我们报道了通过将连续波腔内倍频单共振光学参量振荡器(cw-SHG-SRO)锁定在中等精度法布里-珀罗(FP)腔[2]的传输条纹一侧来稳定它。在该方案中,FP腔传输的信号不仅对任何频率波动敏感,而且对源功率的任何变化都敏感,这可能被误解为频率波动。
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