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Quantum repeaters using continuous-variable teleportation

机译:使用连续可变传送的量子中继器

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摘要

Quantum optical states are fragile and can become corrupted when passed through a lossy communication channel. Unlike for classical signals, optical amplifiers cannot be used to recover quantum signals. Quantum repeaters have been proposed as a way of reducing errors and hence increasing the range of quantum communications. Current protocols target specific discrete encodings, for example quantum bits encoded on the polarization of single photons. We introduce a more general approach that can reduce the effect of loss on any quantum optical encoding, including those based on continuous variables such as the field amplitudes. We show that in principle the protocol incurs a resource cost that scales polynomially with distance. We analyze the simplest implementation and find that while its range is limited it can still achieve useful improvements in the distance over which quantum entanglement of field amplitudes can be distributed.
机译:量子光学状态是脆弱的,并且在通过有损通信通道时可能会损坏。 与经典信号不同,光学放大器不能用于恢复量子信号。 已经提出了量子中继器作为减少误差的方式,因此增加了量子通信范围。 当前协议目标特定的离散编码,例如编码在单个光子的偏振上的量子比特。 我们介绍了一种更一般的方法,可以减少任何量子光学编码的损失的影响,包括基于连续变量的诸如场幅度的效果。 我们表示原则上,协议会引发距离距离的资源成本。 我们分析最简单的实施,并发现其范围受到限制,仍然可以在可以分布场幅度的量子振荡的距离中实现有用的改进。

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