论文标题

倾斜磁场中液氦上表面电子的运动量子状态

Motional Quantum States of Surface Electrons on Liquid Helium in a Tilted Magnetic Field

论文作者

Zadorozhko, A. A., Chen, J., Chepelianskii, A. D., Konstantinov, D.

论文摘要

引入了量子电动力学范式之一Jaynes-Cummings模型(JCM),以描述光与虚拟的两级原子之间的相互作用。最近,有人提出,可以调用JCM Hamiltonian来描述被困在液态氦表面上的电子状态,并遭受相对于表面倾斜的恒定均匀磁场[Yunusova等。物理。莱特牧师。 122,176802(2019)]。在这种情况下,电子的表面结合(Rydberg)状态与倾斜场的平面成分耦合到电子回旋子运动。在这里,我们在理论上和实验上都研究了倾斜磁场中表面电子的光谱特性,并证明了这种系统表现出与原子和分子系统的穿衣状态相同的各种现象。这表明氦气上的电子实现了一个典型的原子系统,在该系统中,组件之间的相互作用可以通过简单的均值和高精度来设计和控制,因此可以将其用作量子实验的新的灵活平台。我们的工作将氦气的纯凝结电子系统引入了原子,分子和光学物理的背景下。

The Jaynes-Cummings model (JCM), one of the paradigms of quantum electrodynamics, was introduced to describe interaction between light and a fictitious two-level atom. Recently it was suggested that the JCM Hamiltonian can be invoked to describe the motional states of electrons trapped on the surface of liquid helium and subjected to a constant uniform magnetic field tilted with respect to the surface [Yunusova et al. Phys. Rev. Lett. 122, 176802 (2019)]. In this case, the surface-bound (Rydberg) states of an electron are coupled to the electron cyclotron motion by the in-plane component of tilted field. Here we investigate, both theoretically and experimentally, the spectroscopic properties of surface electrons in a tilted magnetic field and demonstrate that such a system exhibits a variety of phenomena common to the light dressed states of atomic and molecular systems. This shows that electrons on helium realize a prototypical atomic system where interaction between components can be engineered and controlled by simple means and with high accuracy, and which therefore can be potentially used as a new flexible platform for quantum experiments. Our work introduces a pure condensed-matter system of electrons on helium into the context of atomic, molecular and optical physics.

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