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单频2.1微米微芯片Ho,Tm:YAG激光器中的双偏振模式和自外差噪声

Dual-polarization modes and self-heterodyne noise in a single-frequency 2.1-microm microchip Ho,Tm:YAG laser.

作者信息

He C, Killinger D K

出版信息

Opt Lett. 1994 Mar 15;19(6):396-8. doi: 10.1364/ol.19.000396.

Abstract

We have observed, for the first time to our knowledge, residual stress-induced birefringent dual-polarization modes in a diode-pumped, single-frequency, microchip cw 2.0914-microm Ho,Tm:YAG laser. The two orthogonally polarized modes were separated in frequency by approximately 12 MHz and, when photodetected, produced a 12-MHz self-heterodyne beat signal. The self-heterodyne signal could be eliminated by an external lambda/4 plate and a polarizer to filter out one of the modes, but this required regulation of the pump laser power to better than 1%. These results have important implications for use of the microchip Ho,Tm:YAG laser in a heterodyne detection coherent lidar.

摘要

据我们所知,我们首次在二极管泵浦、单频、微芯片连续波2.0914微米Ho,Tm:YAG激光器中观察到残余应力诱导的双折射双偏振模式。两个正交偏振模式在频率上分离约12兆赫兹,光电探测时产生12兆赫兹的自外差拍频信号。通过外部λ/4波片和偏振器滤除其中一个模式可以消除自外差信号,但这需要将泵浦激光功率调节到优于1%。这些结果对于微芯片Ho,Tm:YAG激光器在外差探测相干激光雷达中的应用具有重要意义。

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