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首页> 外文期刊>Physical review letters >Spin-Mechanical Scheme with Color Centers in Hexagonal Boron Nitride Membranes
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Spin-Mechanical Scheme with Color Centers in Hexagonal Boron Nitride Membranes

机译:六方氮化硼薄膜中具有色心的自旋机械方案

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摘要

Recently observed quantum emitters in hexagonal boron nitride (hBN) membranes have a potential for achieving high accessibility and controllability thanks to the lower spatial dimension. Moreover, these objects naturally have a high sensitivity to vibrations of the hosting membrane due to its low mass density and high elasticity modulus. Here, we propose and analyze a spin-mechanical system based on color centers in a suspended hBN mechanical resonator. Through group theoretical analyses and ab initio calculation of the electronic and spin properties of such a system, we identify a spin doublet ground state and demonstrate that a spin-motion interaction can be engineered, which enables ground-state cooling of the mechanical resonator. We also present a toolbox for initialization, rotation, and readout of the defect spin qubit. As a result, the proposed setup presents the possibility for studying a wide range of physics. To illustrate its assets, we show that a fast and noise-resilient preparation of a multicomponent cat state and a squeezed state of the mechanical resonator is possible; the latter is achieved by realizing the extremely detuned, ultrastrong coupling regime of the Rabi model, where a phonon superradiant phase transition is expected to occur.
机译:由于较小的空间尺寸,最近在六角形氮化硼(hBN)膜中观察到的量子发射器具有实现高可及性和可控性的潜力。而且,由于它们的低质量密度和高弹性模量,这些物体自然对宿主膜的振动具有高灵敏度。在这里,我们提出并分析了基于hBN悬浮机械谐振器中色中心的自旋机械系统。通过对此类系统的电子和自旋特性进行群理论分析和从头算,我们确定了自旋双峰基态,并证明可以设计自旋-运动相互作用,从而可以实现机械谐振器的基态冷却。我们还提供了一个工具箱,用于初始化,旋转和读取缺陷自旋量子位。结果,提出的装置提供了研究广泛的物理学的可能性。为了说明它的优点,我们表明可以快速且有弹性地制备多分量猫状态和机械谐振器的压缩状态。后者是通过实现Rabi模型的极端失谐,超强耦合机制来实现的,在该机制中预计会发生声子超辐射相变。

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