电信波长的片上光量子存储器(会议报告)

I. Craiciu, Jake Rochman, Mi Lei, Evan Miyazono, J. Kindem, J. Bartholomew, T. Zhong, A. Faraon
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引用次数: 0

摘要

光量子存储器将使远程量子通信和模块化量子计算等技术成为可能。稀土离子掺杂晶体为光量子存储提供了良好的固态平台。在稀土元素中,铒尤其具有吸引力,因为它具有长寿命的电信波长共振,可以与硅光子学以及现有的光通信技术和基础设施集成。我们利用掺铒-167的正硅酸钇直接制成的纳米束光子晶体腔,提出了一种电信波长的片上全光量子存储器。使用原子频率梳协议,我们存储的相干脉冲的存储时间长达10µs,尽管效率很低。对于较短的记忆时间,我们实现了0.4%的记忆效率,这受到谐振器和离子系综之间耦合率的限制。通过在稀释冰箱温度下工作,我们能够获得离子具有长光学相干时间和良好的光谱烧孔特性的状态,仅使用永磁体施加的适度磁场。我们描述了该器件中量子存储器的多模特性和保真度,并概述了提高效率的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On-chip optical quantum memory at telecom wavelengths (Conference Presentation)
Optical quantum memories will enable technologies including long distance quantum communication and modular quantum computing. Rare earth ion doped crystals provide an excellent solid state platform for optical quantum memories. Among rare earths, erbium is particularly appealing due to its long-lived telecom-wavelength resonance, allowing integration with silicon photonics and with existing optical communication technology and infrastructure. We present an on-chip all-optical quantum memory at telecom wavelengths using a nanobeam photonic crystal cavity fabricated directly in erbium-167 doped yttrium orthosilicate. Using an atomic frequency comb protocol, we store coherent pulses for memory times as long as 10 µs, albeit with low efficiency. For shorter memory times, we achieve a memory efficiency of 0.4%, which is limited by the coupling rate between the resonator and the ensemble of ions. By working at dilution refrigerator temperatures, we are able to access a regime where the ions have long optical coherence times and good spectral holeburning properties using only a moderate magnetic field applied with permanent magnets. We characterize the multimode properties and fidelity of the quantum memory in this device, and outline a path toward higher efficiency.
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