论文标题

直接观察圆锥形交集的动力学中的几何阶段

Direct observation of geometric phase in dynamics around a conical intersection

论文作者

Valahu, Christophe H., Olaya-Agudelo, Vanessa C., MacDonell, Ryan J., Navickas, Tomas, Rao, Arjun D., Millican, Maverick J., Pérez-Sánchez, Juan B., Yuen-Zhou, Joel, Biercuk, Michael J., Hempel, Cornelius, Tan, Ting Rei, Kassal, Ivan

论文摘要

圆锥形的交叉点在化学和物理学中无处不在,通常是管理过程,例如收获,视力,光催化和化学反应性。它们充当分子电子状态之间的漏斗,从而在化学动力学过程中可以快速有效地放松。另外,当反应路径环绕一个圆锥形交叉点时,分子波函数会经历几何相,这可以通过量子力学干扰来影响反应的结果。过去的实验已经测量了在散射模式和光谱可观察物中的几何阶段的间接特征,但是没有直接观察到基础的波袋干扰。在这里,我们通过实验观察到在可编程的捕获量子量子模拟器中围绕工程圆锥形交叉路口的波袋的动态中观察到的几何学干扰。为了实现这一目标,我们开发了一种技术来重建被困离子的二维波袋密度。实验与理论模型一致,证明了模拟量子模拟器的能力(例如使用捕获离子实现的方法)准确地描述了核量子效应。

Conical intersections are ubiquitous in chemistry and physics, often governing processes such as light harvesting, vision, photocatalysis, and chemical reactivity. They act as funnels between electronic states of molecules, allowing rapid and efficient relaxation during chemical dynamics. In addition, when a reaction path encircles a conical intersection, the molecular wavefunction experiences a geometric phase, which can affect the outcome of the reaction through quantum-mechanical interference. Past experiments have measured indirect signatures of geometric phases in scattering patterns and spectroscopic observables, but there has been no direct observation of the underlying wavepacket interference. Here, we experimentally observe geometric-phase interference in the dynamics of a wavepacket travelling around an engineered conical intersection in a programmable trapped-ion quantum simulator. To achieve this, we develop a technique to reconstruct the two-dimensional wavepacket densities of a trapped ion. Experiments agree with the theoretical model, demonstrating the ability of analog quantum simulators -- such as those realised using trapped ions -- to accurately describe nuclear quantum effects.

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