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Two-dimensional-Raman-terahertz spectroscopy of water: Theory

机译:水的二维拉曼太赫兹光谱学:理论

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We discuss the hybrid 2D-Raman-THz spectroscopy of liquid water. This two-dimensional spectroscopy is designed to directly work in the low-frequency range of the intermolecular degrees of freedom. The information content of 2D-Raman-THz spectroscopy is similar to 2D-Raman or 2D-THz spectroscopy, but its experimental implementation should be easier. That is, 2D-Raman-THz spectroscopy is a 3rd-order nonlinear spectroscopy and as such completely avoids cascading of consecutive 3rd-order signals, which turned out to be a major difficulty in 5th-order 2D-Raman spectroscopy. On the other hand, it does not require any intense THz pump-pulse, the lack of which limits 2D-THz spectroscopy to the study of semiconductor quantum wells as the currently available pulse energies are too low for molecular systems. In close analogy to 2D-Raman spectroscopy, the 2D-Raman-THz response of liquid water is simulated from an all-atom molecular dynamics simulation, and the expected spectral features are discussed.
机译:我们讨论了液态水的混合2D-拉曼-太赫兹光谱。该二维光谱学被设计为直接在分子间自由度的低频范围内工作。 2D-拉曼-太赫兹光谱的信息内容类似于2D-拉曼或2D-太赫兹光谱,但是其实验实现应该更容易。即,二维拉曼太赫兹光谱是三阶非线性光谱,因此完全避免了连续的三阶信号的级联,这在五阶二维拉曼光谱中是主要的困难。另一方面,它不需要任何太赫兹的太赫兹泵浦脉冲,由于目前可用的脉冲能量对于分子系统来说太低,因此缺少它就将二维太赫兹光谱法限制在半导体量子阱的研究中。类似于二维拉曼光谱,从全原子分子动力学模拟中模拟了液态水的二维拉曼-太赫兹响应,并讨论了预期的光谱特征。

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