Towards a Robust and Stand-Alone Ultra-Stable Laser System Based on a 124 K Si Resonator with an Instability of $4\times 10^{-17}$

Sofia Herbers,Jialiang Yu, Lasse Anders, Jan Kawohl, Mattias Misera,Thomas Legero, Kalle Hanhijärvi,Anders Wallin,Thomas Lindvall, Thomas Fordell,Uwe Sterr

2023 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC)(2023)

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摘要
Ultra-stable laser systems are needed for precision measurements, e.g. with optical clocks, where the performance directly depends on the lasers' fractional frequency instability. This instability is fundamentally limited by the thermal noise in the systems' ultra-stable resonators. To reach the thermal noise floor, the technical noise of the laser system must be reduced below the thermal noise limit. This includes, noise resulting from laser power fluctuations, from residual amplitude modulation in the PDH servo or from seismic noise acting on the cavity.
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关键词
acceleration measurement,feedforward,Fourier frequencies,laser frequency,microcontroller-based device,PTB ultrastable laser system,Red Pitaya FPGA system,seismometers,Si/int,temperature 124.0 K,tilt meters,transfer function,vibration isolation platform,vibration-induced frequency fluctuation
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