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APS -APS March Meeting 2017 - Event - Ultrafast Dynamics of Vibration-Cavity Polariton Modes

机译:APS -APS March Meeting 2017-活动-振动腔极化模式的超快动力学

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Vibrational modes of polymers, liquids, and solvated compounds can couple to Fabry-Perot optical cavity modes, creating vibration-cavity polariton modes whose energy tunes with the cavity length and incidence angle. Here we report the pump-probe infrared spectroscopy of vibration-cavity polaritons in cavity-coupled W(CO)$_{mathrm{6}}$. At very early times, we observe quantum beating between the two polariton states find an anomalously low degree of excitation. After the quantum beating, we directly observe spectroscopic signatures of excited-state absorption from both polariton modes and uncoupled reservoir modes. An analytical expression for cavity transmission reproduces these signatures. The upper polariton mode relaxes ten times more quickly than the uncoupled vibrational mode and the polariton lifetime depends on the angle of incidence of the infrared pulses. Coupling to an optical cavity gives a means of control of the lifetime of vibration-cavity polaritons and could have important implications for chemical reactivity in vibrationally excited molecules.
机译:聚合物,液体和溶剂化物的振动模式可以耦合到Fabry-Perot光学腔模式,从而创建振动腔极化子模式,其能量随腔长度和入射角而变化。在这里,我们报告了腔耦合W(CO)$ _ {mathrm {6}} $中振动腔极化子的泵浦探针红外光谱。在很早的时候,我们观察到两个极化子状态之间的量子跳动发现了异常低的激发度。量子跳动之后,我们直接从极化子模式和非耦合储层模式中观察到激发态吸收的光谱特征。空腔传输的解析表达式再现了这些特征。上极化子模式的弛豫速度比非耦合振动模型快十倍,极化子的寿命取决于红外脉冲的入射角。耦合到光学腔提供了一种控制振动腔极化子寿命的方法,并且可能对振动激发分子中的化学反应性具有重要意义。

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