论文标题

部分可观测时空混沌系统的无模型预测

Spin-Controlled Quantum Interference of Levitated Nanorotors

论文作者

Rusconi, Cosimo C., Perdriat, Maxime, Hétet, Gabriel, Romero-Isart, Oriol, Stickler, Benjamin A.

论文摘要

我们描述了如何通过微波驱动单个嵌入式氮 - 牙胶(NV)中心来制备在方向叠加中的电悬浮纳米座。适当地将磁场与NV中心对齐可以达到NV和Diamond旋转之间的Ultrastrong耦合方案,从而实现了粒子三维方向的单旋转控制。我们得出有效的自旋振荡器哈密顿量,以围绕平衡构型进行小振幅旋转,并开发一种方案来创建和观察粒子方向的量子叠加。我们讨论了破坏性的影响,并认为我们的建议可以通过近距离技术实际实施。

We describe how to prepare an electrically levitated nanodiamond in a superposition of orientations via microwave driving of a single embedded nitrogen-vacancy (NV) center. Suitably aligning the magnetic field with the NV center can serve to reach the regime of ultrastrong coupling between the NV and the diamond rotation, enabling single-spin control of the particle's three-dimensional orientation. We derive the effective spin-oscillator Hamiltonian for small amplitude rotation about the equilibrium configuration and develop a protocol to create and observe quantum superpositions of the particle orientation. We discuss the impact of decoherence and argue that our proposal can be realistically implemented with near-future technology.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源