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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Design and Characterization of MEMS Micromirrors for Ion-Trap Quantum Computation
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Design and Characterization of MEMS Micromirrors for Ion-Trap Quantum Computation

机译:离子阱量子计算MEMS微镜的设计与表征

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To build a large-scale quantum information processor (QIP) based on trapped ions or neutral atoms, integrated optical systems capable of delivering laser beams to multiple target locations are necessary. We consider a beam-shifting element consisting of a tilting micromirror located at the focal point of a lens, as a fundamental building block for such a system. We explore the design space of the micromirrors and characterize their dc, frequency, and transient responses. The fastest mirror features the resonant frequency of 113 kHz and the 98% settling time of 11 $mu$s. The design tradeoffs are discussed to facilitate further optimization of the mirror performance for this application.
机译:为了基于捕获的离子或中性原子构建大规模的量子信息处理器(QIP),需要能够将激光束传输到多个目标位置的集成光学系统。我们将由位于透镜焦点处的倾斜微镜组成的光束移位元件作为此类系统的基本构件。我们探索了微镜的设计空间,并表征了它们的直流,频率和瞬态响应。最快的反射镜具有113 kHz的谐振频率和11μs的98%稳定时间。讨论了设计折衷方案,以利于进一步优化此应用程序的镜像性能。

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