论文标题

材料挑战被困的离子量子计算机

Materials Challenges for Trapped-Ion Quantum Computers

论文作者

Brown, Kenneth R., Chiaverini, John, Sage, Jeremy, Häffner, Hartmut

论文摘要

被困的离子量子信息处理器将信息存储在通过电场中的自由空间中的原子离子中。量子逻辑是通过使用光学和微波信号操纵离子内部和共享的量子态来制定的。虽然被困离子对量子增强的计算,传感和通信表现出巨大的希望,但需要材料研究来设计陷阱,从而通过整合系统组件,包括用于离子 - 标准控制的光学和电子设备,同时最大程度地减少TRAP-ElectRode-ElectRode-ElectRode surface产生的近乎异国电场噪声。在这篇综述中,我们考虑了此类集成系统的材料要求,重点是阻碍实际量子计算的问题。我们就材料科学家和被困的离子技术人员如何共同开发基于材料的集成和降噪策略来提出建议,以实现下一代被困的离子量子计算机。

Trapped-ion quantum information processors store information in atomic ions maintained in position in free space via electric fields. Quantum logic is enacted via manipulation of the ions' internal and shared motional quantum states using optical and microwave signals. While trapped ions show great promise for quantum-enhanced computation, sensing, and communication, materials research is needed to design traps that allow for improved performance by means of integration of system components, including optics and electronics for ion-qubit control, while minimizing the near-ubiquitous electric-field noise produced by trap-electrode surfaces. In this review, we consider the materials requirements for such integrated systems, with a focus on problems that hinder current progress toward practical quantum computation. We give suggestions for how materials scientists and trapped-ion technologists can work together to develop materials-based integration and noise-mitigation strategies to enable the next generation of trapped-ion quantum computers.

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