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Frequency stabilization of a diode laser to Doppler-free spectrum of molecular iodine at 633 nm

机译:二极管激光器对633 nm处的分子碘无多普勒光谱的频率稳定

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摘要

We report on frequency stabilization of a diode laser to the hyperfine components of the P(33) 6-3 and R(127) 11-5 transitions of molecular iodine at the He-Ne laser wavelength of 633 nm. Single frequency operation and wavelength control of the diode laser in a compact form is obtained by employing weak optical feedback from an integrated microlens. The diode laser driven by an ultra low noise current supply provides nearly shot noise limited detection. A relative frequency stability of 5 × 10~(-12) is achieved at an integration time of 100 s. Harmonic distortion of the modulated output of the diode laser due to spurious optical feedback is considered to be the main effect limiting the day-to-day frequency reproducibility of 5 × 10~(-11).
机译:我们报告了在633 nm He-Ne激光波长下,二极管激光器对分子碘的P(33)6-3和R(127)11-5过渡的超精细成分的频率稳定性。通过采用来自集成微透镜的弱光反馈,可以实现紧凑型二极管激光器的单频工作和波长控制。由超低噪声电流源驱动的二极管激光器可提供几乎散粒噪声限制的检测。积分时间为100 s时,相对频率稳定性为5×10〜(-12)。二极管激光器调制输出由于杂散光反馈而产生的谐波失真被认为是限制5×10〜(-11)的日常频率再现性的主要影响。

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