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Shot-noise limited detection sensitivity in multiplex CARS microscopy

机译:多重CARS显微镜中的散粒噪声限制检测灵敏度

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摘要

In multiplex CARS microscopy the generated anti-Stokes signal is generated and detected simultaneously over a significant part of the vibrational spectrum. The signal-to-noise ratio of the thus detected spectra is limited only by shot-noise. This principle is demonstrated using a dilution series of 2-propanol in water. It is derived theoretically and shown experimentally that for low solute concentrations - in contrast to methods that suppress the non-resonant background - the CARS signal strength from a particular vibrational mode depends linearly on its concentration. Furthermore, excellent agreement is shown between the experimental data and fits to the theory. It is shown that this approach permits rapid (20 ms acquisition) detection of a single lipid mono-layer, with sufficient signal-to-noise to determine the order parameter for the acyl chain packing. Also it is demonstrated that this detection scheme provides an absolute measure of the solute concentration.
机译:在多路CARS显微镜中,在很大一部分振动频谱上会同时生成并检测生成的反斯托克斯信号。这样检测到的光谱的信噪比仅受散粒噪声限制。使用2-丙醇在水中的稀释系列可以证明这一原理。从理论上得出并通过实验表明,与抑制非共振本底的方法相比,对于低溶质浓度,来自特定振动模式的CARS信号强度与其浓度成线性关系。此外,实验数据之间显示出极好的一致性,符合理论。结果表明,该方法可以快速(20 ms采集)单个脂质单层检测,并具有足够的信噪比来确定酰基链堆积的有序参数。还证明了该检测方案提供了溶质浓度的绝对量度。

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