Genchi Luca, Bucci Andrea, Laptenok Sergey P, Giammona Alessandro, Liberale Carlo
Opt Express. 2021 Jan 18;29(2):2378-2386. doi: 10.1364/OE.415752.
We present a novel configuration for high spectral resolution multiplexing acquisition based on the Hadamard transform in stimulated Raman scattering (SRS) microscopy. The broadband tunable output of a dual-beam femtosecond laser is filtered by a fast, narrowband, and multi-channel acousto-optic tunable filter (AOTF). By turning on and off different subsets of its 8 independent channels, the AOTF generates the spectral masks given by the Hadamard matrix. We demonstrate a seamless and automated operation in the Raman fingerprint and CH-stretch regions. In the presence of additive noise, the spectral measurements using the multiplexed method show the same signal-to-noise ratio of conventional single-wavenumber acquisitions performed with 4 times longer integration time.
我们提出了一种基于受激拉曼散射(SRS)显微镜中的哈达玛变换的高光谱分辨率多路复用采集的新型配置。双光束飞秒激光器的宽带可调输出由快速、窄带和多通道声光可调滤波器(AOTF)进行滤波。通过打开和关闭其8个独立通道的不同子集,AOTF生成由哈达玛矩阵给出的光谱掩模。我们展示了在拉曼指纹和CH拉伸区域的无缝自动化操作。在存在加性噪声的情况下,使用多路复用方法进行的光谱测量显示出与传统单波数采集相同的信噪比,而传统单波数采集的积分时间长4倍。