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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Quasi-rotating frame: accurate line shape determination with increased efficiency in noncollinear 2D optical spectroscopy
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Quasi-rotating frame: accurate line shape determination with increased efficiency in noncollinear 2D optical spectroscopy

机译:准旋转镜架:在非共线二维光学光谱中准确确定线形并提高效率

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摘要

Multidimensional spectroscopies correlate the oscillation frequencies of an atomic or molecular resonance during at least two different time periods. For two-dimensional (2D) optical spectroscopy, oscillations in the first coherence period are sampled in the time domain point-by-point. We present a general method for accelerating this often lengthy task, the quasi-rotating frame (QRF), through heterodyne detection of the nonlinear signal pulse with a systematic variably delayed local oscillator pulse in a noncollinear (box-CARS) geometry four-wave mixing experiment. 2D infrared (2D IR) vibrational echo experiments are conducted to demonstrate the QRF technique, and the results are compared to data obtained in the stationary frame. We describe straightforward techniques to configure QRF detection, prevent experimental artifacts, appropriately calibrate the rotating frame frequencies, and process the resulting data such that accurate liquid structural dynamics may be extracted from a series of waiting-time-dependent 2D spectral line shapes. (C) 2016 Optical Society of America
机译:多维光谱法将至少两个不同时间段内原子或分子共振的振荡频率关联起来。对于二维(2D)光谱,在时域中逐点采样第一相干周期中的振荡。我们提出了一种通过在非共线(box-CARS)几何四波混频系统中通过系统可变地延迟的本地振荡器脉冲的非线性信号脉冲的外差检测来加速此通常很长的任务的准旋转框架(QRF)的通用方法实验。进行了2D红外(2D IR)振动回波实验,以演示QRF技术,并将结果与​​固定框架中获得的数据进行了比较。我们描述了用于配置QRF检测,防止实验伪像,适当地校准旋转帧频率以及处理所得数据的简单技术,以便可以从一系列与时间相关的二维光谱线形状中提取出准确的液体结构动力学。 (C)2016美国眼镜学会

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