New quantum simulations with ultracold Ytterbium gases

L. Livi
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引用次数: 1

Abstract

In recent years, the unprecedented experimental control of the laws of quantum mechanics has led to the so-called quantum technology revolution, a terminology adopted to refer to the applications in which quantum properties play a prominent role. Also the fundamental physics has benefited from these advancements with the development of quantum simulators, controlled quantum platforms engineered in such a way to emulate the physics of complex systems difficult to investigate with classical approaches. The present work deals with the simulation of some fundamental properties of quantum-Hall systems by means of degenerate fermionic Ytterbium atoms confined in artificial periodic potentials. Extreme regimes, inaccessible to real solid-state system, have been explored, paving the way to the observation of exotic phases of matter.
超冷镱气体的新量子模拟
近年来,对量子力学规律的前所未有的实验控制导致了所谓的量子技术革命,这是一个术语,用来指量子特性在其中发挥突出作用的应用。此外,随着量子模拟器的发展,基础物理学也受益于这些进步,以这种方式设计的受控量子平台可以模拟难以用经典方法研究的复杂系统的物理学。本文讨论了用简并费米子镱原子在人工周期势中的模拟量子-霍尔系统的一些基本性质。人们探索了真实固态系统无法达到的极端状态,为观察物质的奇异相铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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