Cheng Chih-Hao, Lin Lyu-Chih, Lin Fan-Yi
Opt Express. 2014 Feb 10;22(3):3600-10. doi: 10.1364/OE.22.003600.
A self-mixing (SM) dual-frequency (DF) laser Doppler velocimeter (LDV) (SM DF-LDV) is proposed and studied, which integrates the advantages of both the SM-LDV and the DF-LDV. An optically injected semiconductor laser operated in a dual-frequency period-one (P1) dynamical state is used as the light source. By probing the target with the light-carried microwave generated from the beat of the two optical frequency components, the spectral broadening in the Doppler signal due to the speckle noise can be significantly reduced. Together with an SM configuration, the SM DF-LDV has the advantages of direction discriminability, self-alignment, high sensitivity, and compact setup. In this study, speckle noise reduction and direction discriminability with an SM DF-LDV are demonstrated. The signal-to-noise ratios (SNRs) at different feedback powers are investigated. Benefiting from the high sensitivity of the SM configuration, an SNR of 23 dB is achieved without employing an avalanched photodetector or photomultiplier tube. The velocity resolution and the SNR under different speckle noise conditions are studied. Average velocity resolution of 0.42 mm/s and SNR of 22.1 dB are achieved when a piece of paper is rotating at a transverse velocity of 5 m/s. Compared with a conventional single-frequency LDV (SF-LDV), the SM DF-LDV shows improvements of 20-fold in the velocity resolution and 8 dB in the SNR.
本文提出并研究了一种自混合(SM)双频(DF)激光多普勒测速仪(LDV)(SM DF-LDV),它集成了SM-LDV和DF-LDV的优点。以工作在双频周期一(P1)动态状态的光注入半导体激光器作为光源。通过探测由两个光频分量的拍频产生的携光微波来检测目标,可显著降低由于散斑噪声导致的多普勒信号中的光谱展宽。结合SM配置,SM DF-LDV具有方向可辨别性、自对准、高灵敏度和紧凑设置的优点。在本研究中,展示了SM DF-LDV的散斑噪声降低和方向可辨别性。研究了不同反馈功率下的信噪比(SNR)。受益于SM配置的高灵敏度,在不使用雪崩光电探测器或光电倍增管的情况下实现了23 dB的SNR。研究了不同散斑噪声条件下的速度分辨率和SNR。当一张纸以5 m/s的横向速度旋转时,实现了0.42 mm/s的平均速度分辨率和22.1 dB的SNR。与传统单频LDV(SF-LDV)相比,SM DF-LDV在速度分辨率上提高了20倍,在SNR上提高了8 dB。