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级联下转换接口,将 650nm 的单光子级信号转换到电信波段。

Cascaded downconversion interface to convert single-photon-level signals at 650  nm to the telecom band.

出版信息

Opt Lett. 2018 Nov 15;43(22):5655-5658. doi: 10.1364/OL.43.005655.

Abstract

We present a device designed for two-step downconversion of single-photon-level signals at 650 nm to the 1.5-μm band with low excess noise and low required pump power as a quantum interface between matter-qubit-based nodes and low-loss photonic channels for quantum communication networks. The required pump power for this interface is around 60% of that for a comparable conventional single-pass device, which reduces the demand on the pump laser and yields a corresponding reduction in dark counts due to inelastic pump scattering. The single-photon-level signal at 649.7 nm is downconverted to the telecom band using a fiber-coupled reverse proton exchange periodically poled lithium niobate waveguide and a 2.19-μm pump laser. By testing the device in the linear regime with a classical input, we achieved 99% depletion efficiency for each stage, corresponding to an internal quantum efficiency of 63% at the optimum pump power for the complete cascaded process.

摘要

我们提出了一种用于将 650nm 的单光子级信号下变频到 1.5μm 波段的两步设备,该设备具有低过剩噪声和低所需泵浦功率,可作为基于物质量子比特的节点与用于量子通信网络的低损耗光子通道之间的量子接口。这种接口所需的泵浦功率大约是可比传统单通设备的 60%,这降低了对泵浦激光的要求,并由于非弹性泵浦散射而导致暗计数相应减少。649.7nm 的单光子级信号使用光纤耦合反向质子交换周期极化铌酸锂波导和 2.19μm 泵浦激光转换到电信波段。通过用经典输入在线性模式下测试该设备,我们实现了每个阶段的 99%的耗尽效率,这对应于对于完整级联过程的最佳泵浦功率,内部量子效率为 63%。

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