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脉冲受激布里渊散射显微镜

Pulsed stimulated Brillouin microscopy.

出版信息

Opt Express. 2023 Jun 5;31(12):19818-19827. doi: 10.1364/OE.489158.

Abstract

Stimulated Brillouin scattering is an emerging technique for probing the mechanical properties of biological samples. However, the nonlinear process requires high optical intensities to generate sufficient signal-to-noise ratio (SNR). Here, we show that the SNR of stimulated Brillouin scattering can exceed that of spontaneous Brillouin scattering with the same average power levels suitable for biological samples. We verify the theoretical prediction by developing a novel scheme using low duty cycle, nanosecond pulses for the pump and probe. A shot noise-limited SNR over 1000 was measured with a total average power of 10 mW for 2 ms or 50 mW for 200 µs integration on water samples. High-resolution maps of Brillouin frequency shift, linewidth, and gain amplitude from cells in vitro are obtained with a spectral acquisition time of 20 ms. Our results demonstrate the superior SNR of pulsed stimulated Brillouin over spontaneous Brillouin microscopy.

摘要

受激布里渊散射是一种新兴的技术,可用于探测生物样本的机械性能。然而,非线性过程需要高的光强以产生足够的信噪比(SNR)。在这里,我们展示了在相同的平均功率水平下,受激布里渊散射的 SNR 可以超过自发布里渊散射。我们通过开发一种新的方案来验证这一理论预测,该方案使用低占空比、纳秒脉冲作为泵浦和探测。在 2ms 的总平均功率为 10mW 或 200µs 积分的情况下,在水样本中测量到超过 1000 的噪声限制 SNR。在体外细胞中获得了布里渊频移、线宽和增益幅度的高分辨率图谱,光谱采集时间为 20ms。我们的结果表明,与自发布里渊显微镜相比,脉冲受激布里渊具有更高的 SNR。

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