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High bandwidth laser-frequency-locking for wideband noise suppression

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arxiv 2101.11847 v1 pith:R5XKMTEG submitted 2021-01-28 physics.optics physics.ins-detquant-ph

High bandwidth laser-frequency-locking for wideband noise suppression

classification physics.optics physics.ins-detquant-ph
keywords frequencynoisefnslsuppressionwidebandexperimentsfnslsimplemented
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Ultra-low frequency noise lasers have been widely used in laser-based experiments. Most narrow-linewidth lasers are implemented by actively suppressing their frequency noise through a frequency noise servo loop (FNSL). The loop bandwidths (LBW) of FNSLs are currently below megahertz, which is gradually tricky to meet application requirements, especially for wideband quantum sensing experiments. This article has experimentally implemented an FNSL with loop-delay-limited 3.5 MHz LBW, which is an order higher than the usual FNSLs. Using this FNSL, we achieved 70 dB laser frequency noise suppression over 100 kHz Fourier frequency range. This technology has broad applications in vast fields where wideband laser frequency noise suppression is inevitable.

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