论文标题

超导量子网络中错误检测的状态转移和纠缠

Error-detected state transfer and entanglement in a superconducting quantum network

论文作者

Burkhart, Luke D., Teoh, James, Zhang, Yaxing, Axline, Christopher J., Frunzio, Luigi, Devoret, M. H., Jiang, Liang, Girvin, S. M., Schoelkopf, R. J.

论文摘要

模块化网络是基于转移Qubits并在模块之间生成纠缠的能力的日益复杂量子设备的有希望的范式。这些任务需要一个低损坏的高速间模块链接,该链接可以实现可扩展的网络连接。同时满足这些需求仍然是远程光量子网络以及单个低温恒温器中模块化超导处理器的出色目标。我们在超导网络中展示了交流和纠缠,并在两个玻色粒量子位之间具有微波式的梁刺器转换,这些钻头位于单独的模块中,并由可降低的同轴总线谐振器连接。我们在多光子编码和跟踪光子损耗事件中传递量子,以提高保真度,使其与单光子编码一样高。此外,与损失误差的两光子干扰和选择后产生纠缠会产生成功概率为79%和忠诚度为0.94的钟状状态,使单个光子获得的误差减半。这些功能证明了模块之间忠实操作的几种有希望的方法,包括资源有效直接门的新型可能性。

Modular networks are a promising paradigm for increasingly complex quantum devices based on the ability to transfer qubits and generate entanglement between modules. These tasks require a low-loss, high-speed intermodule link that enables extensible network connectivity. Satisfying these demands simultaneously remains an outstanding goal for long-range optical quantum networks as well as modular superconducting processors within a single cryostat. We demonstrate communication and entanglement in a superconducting network with a microwave-actuated beamsplitter transformation between two bosonic qubits, which are housed in separate modules and joined by a demountable coaxial bus resonator. We transfer a qubit in a multi-photon encoding and track photon loss events to improve the fidelity, making it as high as in a single-photon encoding. Furthermore, generating entanglement with two-photon interference and postselection against loss errors produces a Bell state with success probability 79% and fidelity 0.94, halving the error obtained with a single photon. These capabilities demonstrate several promising methods for faithful operations between modules, including novel possibilities for resource-efficient direct gates.

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