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Nonlinear two-dimensional terahertz photon echo and rotational spectroscopy in the gas phase

机译:非线性二维太赫兹光子回波和气相旋转光谱

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摘要

Ultrafast 2D spectroscopy uses correlated multiple light−matter interactions for retrieving dynamic features that may otherwise be hidden under the linear spectrum; its extension to the terahertz regime of the electromagnetic spectrum, where a rich variety of material degrees of freedom reside, remains an experimental challenge. We report a demonstration of ultrafast 2D terahertz spectroscopy of gas-phase molecular rotors at room temperature. Using time-delayed terahertz pulse pairs, we observe photon echoes and other nonlinear signals resulting from molecular dipole orientation induced by multiple terahertz field−dipole interactions. The nonlinear time domain orientation signals are mapped into the frequency domain in 2D rotational spectra that reveal J-state-resolved nonlinear rotational dynamics. The approach enables direct observation of correlated rotational transitions and may reveal rotational coupling and relaxation pathways in the ground electronic and vibrational state.
机译:超快2D光谱学使用相关的多个光物质相互作用来检索动态特征,否则这些动态特征可能隐藏在线性光谱下。它对电磁频谱的太赫兹范围的扩展仍然存在着实验上的挑战,在该频谱中存在着各种各样的材料自由度。我们报告了在室温下气相分子转子的超快二维太赫兹光谱的演示。使用时间延迟的太赫兹脉冲对,我们观察到由多个太赫兹场-偶极相互作用引起的分子偶极子取向导致的光子回波和其他非线性信号。非线性时域方向信号在2D旋转光谱中映射到频域,从而揭示了J状态分辨的非线性旋转动力学。该方法可以直接观察相关的旋转跃迁,并且可以揭示处于基态电子和振动状态的旋转耦合和弛豫路径。

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