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Quantum register based on structured diamond waveguide with NV centers

机译:基于结构化钻石波导的量子寄存器,具有NV中心

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We propose a scheme of quantum information processing with NV-centers embedded inside diamond nanostructure. Single NV-center placed in the cavity plays role of an electron spin qubit which evolution is controlled by microwave pulses. Besides, it couples to the cavity field via optical photon exchange. In their turn, neighbor cavities are coupled to each other through the photon hopping to form a bus waveguide mode. This waveguide mode overlaps with all NV-centers. Entanglement between distant centers is organized by appropriate tuning of their optical frequency relative to the waveguide frequency via electrostatic control without lasers. We describe the controlled-Z operation that is by one order of magnitude faster than in off-resonant laser-assisted schemes proposed earlier. Spectral characteristics of the one-dimensional chain of microdisks are calculated by means of numerical modeling, using the approach analogous to the tight-binding approximation in the solid-state physics. The data obtained allow to optimize the geometry of the microdisk array for the effective implementation of quantum operations.
机译:我们提出了一种嵌入金刚石纳米结构内部的NV中心的量子信息处理方案。放置在腔中的单个NV中心起到电子旋转Qubit的作用,其演化由微波脉冲控制。此外,它通过光学光子交换耦合到腔场。轮到轮,邻居腔通过光子跳跃彼此耦合以形成总线波导模式。该波导模式与所有NV中心重叠。通过在没有激光器的情况下通过静电控制适当地调谐其光学频率的光学频率来组织远处中心之间的缠结。我们描述了比前面提出的偏移激光辅助方案的一个量度幅度的控制Z操作。通过数值建模计算微小微小微小线的一维链的光谱特性,使用类似于固态物理学中的紧密结合近似的方法来计算。获得的数据允许优化Microdisk阵列的几何形状,以便有效实现量子操作。

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