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磁场中二维外尔方程的量子模拟

Quantum Simulation of the Two-Dimensional Weyl Equation in a Magnetic Field.

作者信息

Jiang Y, Cai M-L, Wu Y-K, Mei Q-X, Zhao W-D, Chang X-Y, Yao L, He L, Zhou Z-C, Duan L-M

机构信息

Center for Quantum Information, Institute for Interdisciplinary Information Sciences, Tsinghua University, Beijing 100084, People's Republic of China.

HYQ Co., Ltd., Beijing 100176, People's Republic of China.

出版信息

Phys Rev Lett. 2022 May 20;128(20):200502. doi: 10.1103/PhysRevLett.128.200502.

Abstract

Quantum simulation of 1D relativistic quantum mechanics has been achieved in well-controlled systems like trapped ions, but properties like spin dynamics and response to external magnetic fields that appear only in higher dimensions remain unexplored. Here we simulate the dynamics of a 2D Weyl particle. We show the linear dispersion relation of the free particle and the discrete Landau levels in a magnetic field, and we explicitly measure the spatial and spin dynamics from which the conservation of helicity and properties of antiparticles can be verified. Our work extends the application of an ion trap quantum simulator in particle physics with the additional spatial and spin degrees of freedom.

摘要

一维相对论量子力学的量子模拟已在诸如囚禁离子等可控系统中实现,但诸如自旋动力学和仅在更高维度中出现的对外部磁场的响应等性质仍未得到探索。在此,我们模拟二维外尔粒子的动力学。我们展示了自由粒子的线性色散关系以及磁场中的离散朗道能级,并且我们明确测量了空间和自旋动力学,由此可以验证螺旋度守恒和反粒子的性质。我们的工作通过额外的空间和自旋自由度扩展了离子阱量子模拟器在粒子物理学中的应用。

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