量子位元
量子信息
量子纠缠
量子计算机
自旋工程
量子技术
背景(考古学)
旋转
自旋(空气动力学)
量子信息科学
量子网络
物理
量子
工程物理
计算机科学
纳米技术
材料科学
开放量子系统
凝聚态物理
量子力学
电子
自旋极化
古生物学
热力学
生物
作者
Gary Wolfowicz,F. Joseph Heremans,Christopher P. Anderson,Shun Kanai,Hosung Seo,Ádám Gali,Giulia Galli,D. D. Awschalom
标识
DOI:10.1038/s41578-021-00306-y
摘要
Defects with associated electron and nuclear spins in solid-state materials have a long history relevant to quantum information science that goes back to the first spin echo experiments with silicon dopants in the 1950s. Since the turn of the century, the field has rapidly spread to a vast array of defects and host crystals applicable to quantum communication, sensing and computing. From simple spin resonance to long-distance remote entanglement, the complexity of working with spin defects is fast increasing, and requires an in-depth understanding of the defects’ spin, optical, charge and material properties in this modern context. This is especially critical for discovering new relevant systems for specific quantum applications. In this Review, we expand upon all the key components of solid-state spin defects, with an emphasis on the properties of defects and of the host material, on engineering opportunities and on other pathways for improvement. This Review aims to be as defect and material agnostic as possible, with some emphasis on optical emitters, providing broad guidelines for the field of solid-state spin defects for quantum information. Defect-based spin qubits offer a versatile platform for creating solid-state quantum devices. This Review is a guide for understanding the properties and applications of current spin defects, and provides a framework for designing, engineering and discovering new qubit candidates
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