Direct and ultrafast probing of quantum many-body interaction and Mott-insulator transition through coherent two-dimensional spectroscopy

N. Phuc, P. Q. Trung
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引用次数: 1

Abstract

Interactions between particles in quantum many-body systems play a crucial role in determining the electric, magnetic, optical, and thermal properties of the system. The recent progress in the laser-pulse technique has enabled the manipulations and measurements of physical properties on ultrafast timescales. Here, we propose a method for the direct and ultrafast probing of quantum many-body interaction through coherent two-dimensional (2D) spectroscopy. Up to a moderate interaction strength, the inter-particle interaction manifests itself in the emergence of off-diagonal peaks in the 2D spectrum before all the peaks coalesce into a single diagonal peak as the system approaches the Mott-insulating phase in the strongly interacting regime. The evolution of the 2D spectrum as a function of the time delay between the second and third laser pulses can provide important information on the ultrafast time variation of the interaction.
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利用相干二维光谱直接超快探测量子多体相互作用和莫特-绝缘体跃迁
在量子多体系统中,粒子之间的相互作用在决定系统的电、磁、光学和热性质方面起着至关重要的作用。激光脉冲技术的最新进展使得在超快时间尺度上操纵和测量物理性质成为可能。在这里,我们提出了一种通过相干二维(2D)光谱直接超快探测量子多体相互作用的方法。在中等强度的相互作用下,粒子间的相互作用表现为在二维光谱中出现非对角线峰,然后在强相互作用区,当系统接近莫特绝缘相时,所有的峰合并成一个对角线峰。二维光谱随第二和第三个激光脉冲之间的时间延迟的演化可以提供相互作用的超快时间变化的重要信息。
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