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Injection locking method for Raman beams in atom Interferometer

机译:原子干涉仪中拉曼梁注射锁定方法

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We present a novel method to generate two phase-locked beams with a frequency offset of 6.834 GHz. The output of the master laser is firstly modulated by an electric optical modulator (EOM), and then further injected into an Extended Cavity Diode Lasers (ECDL) which is used to filter out the unwanted mode and amplify the laser power. By locking to the first-order lower sideband of the modulated master laser, the average variance of the phase fluctuations is 5.6×10~(-3) rad~2, which implies phase coherence of 99.44% between the master laser and the slave ECDL. The line width of the beat notes is less than 1Hz. For the long term stability, with the delicate design of the electronic controller in ECDL, the phase coherence of the two laser beams can be stabilized over 200 hours without any adjustment. The Raman system is applicable for gravity detection with a preliminary sensitivity Ag/g of 4.5 × 10~(-7)for interrogation time of 1500 s.
机译:我们提出了一种新的方法来产生具有6.834GHz的频率偏移的两个锁相光束。主激光器的输出首先通过电光调制器(EOM)调制,然后进一步注入到扩展腔二极管激光器(ECDL)中,该激光器(ECDL)用于过滤输出不需要的模式并放大激光功率。通过锁定到调制主激光器的一阶下边带,相位波动的平均方差为5.6×10〜(-3)rad〜2,这意味着主激光器和从属ecdl之间的相干相干性为99.44% 。节拍笔记的线宽小于1Hz。对于长期稳定性,通过ECDL中的电子控制器的精细设计,两个激光束的相干梁可以在200小时内稳定而没有任何调整。拉曼系统适用于重力检测,初步灵敏度Ag / g为4.5×10〜(-7),用于询问1500秒。

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