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氮空位中心三量子比特系统中全纯控制的非阿贝尔几何相的演示。

Demonstration of the Holonomically Controlled Non-Abelian Geometric Phase in a Three-Qubit System of a Nitrogen Vacancy Center.

作者信息

Bhattacharyya Shaman, Bhattacharyya Somnath

机构信息

Nano-Scale Transport Physics Laboratory, School of Physics, University of the Witwatersrand, Johannesburg, 1 Jan Smuts Avenue, Wits 2050, South Africa.

出版信息

Entropy (Basel). 2022 Nov 2;24(11):1593. doi: 10.3390/e24111593.

Abstract

The holonomic approach to controlling (nitrogen-vacancy) NV-center qubits provides an elegant way of theoretically devising universal quantum gates that operate on qubits via calculable microwave pulses. There is, however, a lack of simulated results from the theory of holonomic control of quantum registers with more than two qubits describing the transition between the dark states. Considering this, we have been experimenting with the IBM Quantum Experience technology to determine the capabilities of simulating holonomic control of NV-centers for three qubits describing an eight-level system that produces a non-Abelian geometric phase. The tunability of the geometric phase via the detuning frequency is demonstrated through the high fidelity (~85%) of three-qubit off-resonant holonomic gates over the on-resonant ones. The transition between the dark states shows the alignment of the gate's dark state with the qubit's initial state hence decoherence of the multi-qubit system is well-controlled through a π/3 rotation.

摘要

控制(氮空位)NV 中心量子比特的完整控制方法,为理论上设计通用量子门提供了一种优雅的方式,该量子门通过可计算的微波脉冲作用于量子比特。然而,对于描述多于两个量子比特的量子寄存器的完整控制理论,缺乏关于暗态之间跃迁的模拟结果。考虑到这一点,我们一直在使用 IBM 量子体验技术进行实验,以确定模拟 NV 中心对三个量子比特的完整控制的能力,这三个量子比特描述了一个产生非阿贝尔几何相位的八能级系统。通过三量子比特非共振完整门相对于共振门的高保真度(约 85%),证明了通过失谐频率对几何相位的可调性。暗态之间的跃迁表明门的暗态与量子比特的初始态对齐,因此通过 π/3 旋转可以很好地控制多量子比特系统的退相干。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/697c/9689909/f5fc57c95cfe/entropy-24-01593-g001.jpg

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