论文标题

使用光学晶格中的超低原子的量子模拟工具

Tools for quantum simulation with ultracold atoms in optical lattices

论文作者

Schäfer, Florian, Fukuhara, Takeshi, Sugawa, Seiji, Takasu, Yosuke, Takahashi, Yoshiro

论文摘要

经过多年的基本工具开发,使用超电原子的量子模拟现已达到可用于研究复杂量子过程的成熟度。新实验和升级现有设置的规划至关重要取决于可用技术的广泛概述,它们的特定优势和局限性。这项技术评论旨在提供最新技术的全面汇编。我们讨论基本原理,可用技术及其当前应用范围。为了使用光学晶格实验,重点介绍固态物理中各种现象的模拟,我们回顾了它们的基础知识,必要的技术和可访问的物理参数。我们概述了如何控制和使用与外部电势以及原子之间的相互作用,以及如何设计新的合成量规场和自旋轨道耦合。我们使用量子气显微镜讨论了位置分辨技术的最新进展,并用两电子原子种类描述了量子模拟实验的独特特征。

After many years of development of the basic tools, quantum simulation with ultracold atoms has now reached the level of maturity where it can be used to investigate complex quantum processes. Planning of new experiments and upgrading existing set-ups depends crucially on a broad overview of the available techniques, their specific advantages and limitations. This Technical Review aims to provide a comprehensive compendium of the state of the art. We discuss the basic principles, the available techniques and their current range of applications. Focusing on the simulation of varied phenomena in solid-state physics using optical lattice experiments, we review their basics, the necessary techniques and the accessible physical parameters. We outline how to control and use interactions with external potentials and between the atoms, and how to design new synthetic gauge fields and spin-orbit coupling. We discuss the latest progress in site-resolved techniques using quantum gas microscopes, and describe the unique features of quantum simulation experiments with two-electron atomic species.

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