Realizing quantum materials with Helium: Helium films at ultralow temperatures, from strongly correlated atomically layered films to topological superfluidity

J. Saunders
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引用次数: 3

Abstract

This article provides an overview, primarily from an experimental perspective, of recent progress and future prospects in using helium to realize a range of quantum materials of generic interest, by "top-down" and "bottom-up" nanotechnology. We can grow model systems to realise new quantum states of matter, and explore key issues in condensed matter physics. In the language of cold atomic gases, two dimensional and confined 3He and 4He provide "quantum simulators", with the potential to uncover new emergent quantum states. These include: strictly 2D Fermi system with Mott-Hubbard transition; interacting coupled 2D fermion-boson system; heavy fermion quantum criticality; ideal 2D frustrated ferromagnetism; 2D quantum spin liquid; intertwined superfluid and density wave order with emergent large symmetry; topological mesoscopic superfluidity (new materials and emergent excitations).
用氦实现量子材料:超低温下的氦膜,从强相关原子层状膜到拓扑超流动性
本文主要从实验的角度概述了利用氦通过“自上而下”和“自下而上”的纳米技术实现一系列普遍感兴趣的量子材料的最新进展和未来前景。我们可以发展模型系统来实现物质的新量子态,并探索凝聚态物理中的关键问题。在冷原子气体的语言中,二维和受限的3He和4He提供了“量子模拟器”,有可能发现新的涌现的量子态。这些包括:具有莫特-哈伯德跃迁的严格二维费米系统;相互作用耦合二维费米子-玻色子系统;重费米子量子临界;理想二维受挫铁磁性;二维量子自旋液体;具有涌现大对称的交织超流和密度波序拓扑介观超流动性(新材料和涌现激发)。
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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