论文标题

光子电路中自旋量子记忆的多路复用控制

Multiplexed control of spin quantum memories in a photonic circuit

论文作者

Golter, D. Andrew, Clark, Genevieve, Dandachi, Tareq El, Krastanov, Stefan, Leenheer, Andrew J., Wan, Noel H., Raniwala, Hamza, Zimmermann, Matthew, Dong, Mark, Chen, Kevin C., Li, Linsen, Eichenfield, Matt, Gilbert, Gerald, Englund, Dirk

论文摘要

许多量子信息处理应用程序中的一个核心目标是一个量子记忆网络,可以互相纠缠,同时以高忠诚度进行单独控制和测量。这个目标激发了使用钻石颜色中心旋转光子接口的集成旋转量子记忆的可编程光子集成电路(图片)的开发。但是,这种方法在密切包装的寄存器内的单个旋转的微波控制中引入了挑战。在这里,我们提出了一个量子内存的光子平台,能够(i)将多个钻石颜色中心旋转整合到一个低温兼容的高速可编程PIC平台中; (ii)选择性操纵通过可调磁场梯度解决的单个旋转量子位; (iii)使用数值优化的微波脉冲成型同时控制多个Qubits。由PIC平台启用的局部光控件的组合以及选择性旋转操作为在芯片内和芯片间平台上的可伸缩量子网络打开了路径。

A central goal in many quantum information processing applications is a network of quantum memories that can be entangled with each other while being individually controlled and measured with high fidelity. This goal has motivated the development of programmable photonic integrated circuits (PICs) with integrated spin quantum memories using diamond color center spin-photon interfaces. However, this approach introduces a challenge in the microwave control of individual spins within closely packed registers. Here, we present a quantum-memory-integrated photonics platform capable of (i) the integration of multiple diamond color center spins into a cryogenically compatible, high-speed programmable PIC platform; (ii) selective manipulation of individual spin qubits addressed via tunable magnetic field gradients; and (iii) simultaneous control of multiple qubits using numerically optimized microwave pulse shaping. The combination of localized optical control, enabled by the PIC platform, together with selective spin manipulation opens the path to scalable quantum networks on intra-chip and inter-chip platforms.

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