Numerical investigations on phase-diversity optical digital coherent receiver-based noncontact photoacoustic signal detection
[摘要] Optical interferometry is promising for noncontact photoacoustic (PA) signal detection; however, the intensity detection of the interference signal makes the system insensitive and unreliable due to fluctuations in the optical path length difference. To address this, a noncontact PA signal detection utilizing an optical digital coherent receiver to acquire the entire quadrature components of the PA signal in self-homodyne mode is proposed and numerically investigated. Simulation results show that by applying a narrow bandwidth probe laser at a linewidth of 33kHz, the signal SNR meets the requirement of a 12-bit quantizer together with 13-dB tolerance to extra-intensity noise.
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[效力级别] [学科分类] 电子、光学、磁材料
[关键词] photoacoustic signal;noncontact photoacoustic imaging;phase-diversity;optical 90-degree hybrid;optical digital coherent receiver [时效性]