论文标题
超导量子网络中的纠缠净化和保护
Entanglement purification and protection in a superconducting quantum network
论文作者
论文摘要
高保真量子纠缠是量子通信和分布式量子计算,允许量子状态传送,密集编码和量子加密的关键资源。然而,通信渠道中的任何破坏来源都会降低纠缠保真度,从而增加了纠缠状态协议的错误率。纠缠净化提供了一种方法,可以通过将不纯净的国家提炼成更高的纠缠状态,从而减轻这些非理想性。在这里,我们证明了两个远程超导量子节点之间共享的铃铛对的纠缠净化,该量子节点是通过中等损失的,1米长的长超导通信电缆连接的。我们使用净化过程来纠正通过电缆传输引起的主要振幅阻尼错误,而富达的忠诚度则增加到$ 25 \%$,这对于更高的阻尼错误而达到了。净化实现的最佳最终保真度为$ 94.09 \ pm 0.98 \%$。此外,我们同时使用动态脱钩和RABI驾驶来保护纠缠状态免受局部噪声的侵害,从而将有效的量子dephasing时间从$ 3〜 \rmμs$增加到$ 12〜 \rmμs$。这些方法证明了在超导量子通信网络中产生和保存非常高的纠缠的潜力。
High-fidelity quantum entanglement is a key resource for quantum communication and distributed quantum computing, enabling quantum state teleportation, dense coding, and quantum encryption. Any sources of decoherence in the communication channel however degrade entanglement fidelity, thereby increasing the error rates of entangled state protocols. Entanglement purification provides a method to alleviate these non-idealities, by distilling impure states into higher-fidelity entangled states. Here we demonstrate the entanglement purification of Bell pairs shared between two remote superconducting quantum nodes connected by a moderately lossy, 1-meter long superconducting communication cable. We use a purification process to correct the dominant amplitude damping errors caused by transmission through the cable, with fractional increases in fidelity as large as $25\%$, achieved for higher damping errors. The best final fidelity the purification achieves is $94.09\pm 0.98\%$. In addition, we use both dynamical decoupling and Rabi driving to protect the entangled states from local noise, increasing the effective qubit dephasing time by a factor of 4, from $3~\rm μs$ to $12~\rmμs$. These methods demonstrate the potential for the generation and preservation of very high-fidelity entanglement in a superconducting quantum communication network.