论文标题

对十六角硼硼化硼的相干量子发射器的审查

Review on coherent quantum emitters in hexagonal boron nitride

论文作者

Kubanek, Alexander

论文摘要

六角硼硝化物是一种新兴的二维材料,在纳米机械或纳米力学等领域具有深远的应用。它的分层体系结构在新材料(例如范德华异质结构)中起着关键作用。分层结构对托管,光学活跃的缺陷中心也具有独特的影响。一种非常特殊的缺陷中心源于在层之间定位的机械隔离轨道的可能性。由于缺乏与低频声音子的耦合,这是保护光学转变不受机械相互作用与环境的机械相互作用的一致性的重要元素。因此,即使在室温下,光谱过渡线宽也保持异常狭窄,从而在环境条件下为连贯的量子光学元件铺平了新的方式。在这篇综述中,我总结了六角硼硼化硼的最新缺陷中心,重点是光学连贯的缺陷中心。我讨论了当前对缺陷中心的理解,剩下的问题和潜在的研究方向以克服普遍的挑战。该领域对量子技术(例如量子光学,量子光子学和自旋光学力学)的影响进行了广泛的视角。

Hexagonal boron nitride is an emerging two-dimensional material with far-reaching applications in fields like nanophotonics or nanomechanics. Its layered architecture plays a key role for new materials such as Van der Waals heterostructures. The layered structure has also unique implications for hosted, optically active defect centers. A very special type of defect center arises from the possibility to host mechanically isolated orbitals localized between the layers. The resulting absence of coupling to low-frequency acoustic phonons turns out to be the essential element to protect the coherence of optical transitions from mechanical interactions with the environment. Consequently, the spectral transition linewidth remains unusually narrow even at room temperature, thus paving a new way towards coherent quantum optics under ambient conditions. In this review, I summarize the state-of-the-art of defect centers in hexagonal boron nitride with a focus on optically coherent defect centers. I discuss the current understanding of the defect centers, remaining questions and potential research directions to overcome pervasive challenges. The field is put into a broad perspective with impact on quantum technology such as quantum optics, quantum photonics as well as spin optomechanics.

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