Active Cancellation of Servo-Induced Noise on Stabilized Lasers via Feedforward

前馈 主动噪声控制 噪音(视频) 激光器 控制理论(社会学) 伺服 声学 物理 计算机科学 光学 降噪 控制(管理) 控制工程 工程类 人工智能 图像(数学)
作者
Lintao Li,William Huie,Neville Chen,Brian DeMarco,Jacob P. Covey
出处
期刊:Physical review applied [American Physical Society]
卷期号:18 (6) 被引量:26
标识
DOI:10.1103/physrevapplied.18.064005
摘要

Many precision laser applications require active frequency stabilization. However, such stabilization loops operate by pushing noise to frequencies outside their bandwidth, leading to large ``servo bumps'' that can have deleterious effects for certain applications. The prevailing approach to filtering this noise is to pass the laser through a high-finesse optical cavity, which places constraints on the system design. Here, we propose and demonstrate a different approach where a frequency error signal is derived from a beat note between the laser and the light that passes through the reference cavity. The phase noise derived from this beat note is fed forward to an electro-optic modulator after the laser, carefully accounting for relative delay, for real-time frequency correction. With a hertz-line-width laser, we show $\ensuremath{\gtrsim}20\phantom{\rule{0.2em}{0ex}}\mathrm{dB}$ noise suppression at the peak of the servo bump (approximately $250\phantom{\rule{0.2em}{0ex}}\mathrm{kHz}$) and a noise-suppression bandwidth of approximately $5\phantom{\rule{0.2em}{0ex}}\mathrm{MHz}$---well beyond the servo bump. By simulating the Rabi dynamics of a two-level atom with our measured data, we demonstrate substantial improvements to the pulse fidelity over a wide range of Rabi frequencies. Our approach offers a simple and versatile method for obtaining a clean spectrum of a narrow-line-width laser, as required in many emerging applications of cold atoms, and is readily compatible with commercial systems that may even include wavelength conversion.
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