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Linear Zeeman Effect on Iodine-Based Frequency Stabilized Laser

机译:基于碘频稳压激光的线性栖息效应

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We report on the effect of a weak external magnetic field on iodine hyperfine transitions around 514 nm, used for infrared laser frequency stabilization. We use a frequency tripled laser diode operating at 1542.1 nm, to interrogate the iodine vapor inserted into a short sealed quartz cell, surrounded by an efficient solenoid. Thus we create a controlled external magnetic fields whose orientation is longitudinal to the counter-propagating laser beams direction with a level of 7 Gauss/Ampere. The combination of the iodine cell and the solenoid is inserted into a magnetic shield that ensures a residual magnetic field with an attenuation factor of 200. We have observed a linear Zeeman Effect that affects the iodine hyperfine line width as well as its center frequency. We measured large frequency shifts, induced by the longitudinal magnetic field, at the level of 1.8x10-12/Gauss, for all 15 hyperfine components of the R 34[44-0]127 I2 line at 514.017 nm. Thus an isolation from external magnetic fields below the mG level is required to confer a residual frequency instability at the 10-15 level.
机译:我们报告了弱外部磁场对碘超血液过渡对514nm左右的效果,用于红外激光频率稳定。我们使用在1542.1nm处运行的频率三倍激光二极管,以询问插入的碘蒸汽插入短密封的石英细胞中,由有效的螺线管包围。因此,我们创建了一种受控的外部磁场,其取向具有纵向与反传播激光束方向的纵向,其具有7个高斯/安培的水平。碘电池和螺线管的组合插入磁屏蔽中,该磁屏蔽在磁屏蔽中,确保衰减因子为200.我们已经观察到影响碘超细线宽以及其中心频率的线性栖息效应。我们测量了由纵向磁场引起的大频率偏移,在1.8x10的水平下 -12 / Gauss,对于R 34的所有15个Hyperfine组件[44-0] 127 一世 2 线514.017 nm。因此,需要低于MG水平的外部磁场的隔离才能在10中赋予剩余频率不稳定 -15 等级。

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