论文标题

可编程的时空挤压光源

Programmable time-multiplexed squeezed light source

论文作者

Tomoda, Hiroko, Yoshida, Takato, Kashiwazaki, Takahiro, Umeki, Takeshi, Enomoto, Yutaro, Takeda, Shuntaro

论文摘要

大规模量子信息处理(QIP)的主要方法之一是基于时间多路复用(TM)的连续变量(CV)方案。作为这种方法的基本构建块,需要依次产生量子光源,以产生序列的挤压脉冲;但是,常规的CV TM实验使用了固定光源,这些光源只能输出以相同的挤压水平和相位的挤压脉冲。我们在这里演示了一个可编程的时间挤压挤压光源,该挤压源可以在低于100 ns的时间间隔内生成具有各种挤压水平和相位的顺序挤压脉冲。可以通过软件任意选择生成模式,而无需更改其硬件配置。通过使用波导光学参数放大器并调节其连续的泵灯来启用这一点。我们的光源将实施各种大规模的CV QIP任务。

One of the leading approaches to large-scale quantum information processing (QIP) is the continuous-variable (CV) scheme based on time multiplexing (TM). As a fundamental building block for this approach, quantum light sources to sequentially produce time-multiplexed squeezed-light pulses are required; however, conventional CV TM experiments have used fixed light sources that can only output the squeezed pulses with the same squeezing levels and phases. We here demonstrate a programmable time-multiplexed squeezed light source that can generate sequential squeezed pulses with various squeezing levels and phases at a time interval below 100 ns. The generation pattern can be arbitrarily chosen by software without changing its hardware configuration. This is enabled by using a waveguide optical parametric amplifier and modulating its continuous pump light. Our light source will implement various large-scale CV QIP tasks.

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