二苯基磷酰叠氮中振动强耦合下的超快光谱。

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL
Garrek Stemo, Joel Nishiuchi, Harsh Bhakta, Haochuan Mao, Garret Wiesehan, Wei Xiong and Hiroyuki Katsuki*, 
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引用次数: 0

摘要

空腔光子和分子振动的强耦合产生了振动极化子,已被证明可以改变化学反应活性和材料特性。虽然振动极化子的超快光谱已在金属复合物中得到了深入研究,但振动强耦合有机分子的超快动力学仍未得到探索。在此,我们报告了振动强耦合条件下二苯基叠氮磷酰的超快泵探针测量和二维红外光谱。早期的时间振荡结构表明两种极化子模式之间存在相干的能量交换,并在∼2 ps 内衰减。我们在下极子周围观察到一个很大的瞬态吸收特征,这可以用下极子和上极子周围重叠的激发态吸收和导数形结构来解释。后一个特征可以用拉比分裂收缩来解释,这归因于基态中的种群减少。这些结果证实了之前报道的描述振动极化子非线性光谱的光谱理论。我们还注意到腔镜复杂的层结构的影响。电场分布对介质镜腔层状结构的渗透会显著影响极化子系统的拉比分裂和衰减时间常数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ultrafast Spectroscopy under Vibrational Strong Coupling in Diphenylphosphoryl Azide

Ultrafast Spectroscopy under Vibrational Strong Coupling in Diphenylphosphoryl Azide

Ultrafast Spectroscopy under Vibrational Strong Coupling in Diphenylphosphoryl Azide

Strong coupling of cavity photons and molecular vibrations creates vibrational polaritons that have been shown to modify chemical reactivity and alter material properties. While ultrafast spectroscopy of vibrational polaritons has been performed intensively in metal complexes, ultrafast dynamics in vibrationally strongly coupled organic molecules remain unexplored. Here, we report ultrafast pump–probe measurement and two-dimensional infrared spectroscopy in diphenylphosphoryl azide under vibrational strong coupling. Early time oscillatory structures indicate coherent energy exchange between the two polariton modes, which decays in ∼2 ps. We observe a large transient absorptive feature around the lower polariton, which can be explained by the overlapped excited-state absorption and derivative-shaped structures around the lower and upper polaritons. The latter feature is explained by the Rabi splitting contraction, which is ascribed to a reduced population in the ground state. These results reassure the previously reported spectroscopic theory to describe nonlinear spectroscopy of vibrational polaritons. We have also noticed the influence of the complicated layer structure of the cavity mirrors. The penetration of the electric field distribution into the layered structure of the dielectric-mirror cavities can significantly affect the Rabi splitting and the decay time constant of polaritonic systems.

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来源期刊
The Journal of Physical Chemistry A
The Journal of Physical Chemistry A 化学-物理:原子、分子和化学物理
CiteScore
5.20
自引率
10.30%
发文量
922
审稿时长
1.3 months
期刊介绍: The Journal of Physical Chemistry A is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.
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