SAW耦合金刚石NV−自旋振荡器和量子传感器

M. Tabib-Azar
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引用次数: 2

摘要

金刚石中的负电荷氮空位缺陷(NV-)提供了一种独特的自旋1系统,具有弱的温度依赖性发射光谱。铌酸锂(LiNbO3)表面声波声子的圆极化磁化镍。这项工作的主要目的是开发反馈机制,将声SAW和nv基态的自旋跃迁耦合起来,以实现时钟、磁力计、静电计和量子位的稳定振荡器。在433.6225 MHz的SAW滤波器上沉积NV-中心的金刚石,我们发现NV-态影响SAW的传播特性,SAW影响NV-自旋态。
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SAW Coupled Diamond NV− Spin Oscillators and Quantum Sensors
Negatively charged nitrogen-vacancy defects (NV-) in diamond offer a unique spin 1 system with weak temperature dependent emission spectra. The circular polarization of phonons of the surface acoustic waves (SAW) on lithium niobate (LiNbO3) have been shown to magnetize nickel. The main objective of this work is to develop feedback mechanisms to couple SAW and the spin transitions in the NV-ground state to realize a stable oscillator for clocks, magnetometers, electrometers, and Qubits. Using diamond with NV- centers deposited on a 433.6225 MHz SAW filter, we show that NV- states affect the SAW propagation properties and SAW affects the NV- spin states.
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