论文标题

使用高斯相关光子梁的Qubit Qubit纠缠的长距离分布

Long-distance distribution of qubit-qubit entanglement using Gaussian-correlated photonic beams

论文作者

Agustí, Joan, Minoguchi, Yuri, Fink, Johannes M., Rabl, Peter

论文摘要

我们通过驱动非分类参数放大器的输出场来驱动远处矩形,研究大量子网络中纠缠的确定性产生和分布。在这种情况下,放大器会产生连续的高斯两种模式挤压状态,该状态充当量子量子的量子相关储层,并将它们放松成高度纠缠的稳态。在这里,我们对在现实条件下,尤其是有限的放大器带宽,波导损失和传播延迟的情况下,该方案在实际情况下可以实现的最大纠缠和最佳纠缠产生率感兴趣。通过将完整网络的精确数值模拟与近似分析结果相结合,我们预测了在各种条件下放大器和相应的Qubit-Qubit纠缠的最佳工作点。我们的发现表明,这种被动的高斯 - 转化为离散可变的纠缠提供了一种强大且具有实验性的非常有吸引力的方法,可用于操作大型光学,微波或混合量子网络,目前为此开发了有效的参数放大器。

We investigate the deterministic generation and distribution of entanglement in large quantum networks by driving distant qubits with the output fields of a non-degenerate parametric amplifier. In this setting, the amplifier produces a continuous Gaussian two-mode squeezed state, which acts as a quantum-correlated reservoir for the qubits and relaxes them into a highly entangled steady state. Here we are interested in the maximal amount of entanglement and the optimal entanglement generation rates that can be achieved with this scheme under realistic conditions taking, in particular, the finite amplifier bandwidth, waveguide losses and propagation delays into account. By combining exact numerical simulations of the full network with approximate analytic results, we predict the optimal working point for the amplifier and the corresponding qubit-qubit entanglement under various conditions. Our findings show that this passive conversion of Gaussian- into discrete- variable entanglement offers a robust and experimentally very attractive approach for operating large optical, microwave or hybrid quantum networks, for which efficient parametric amplifiers are currently developed.

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