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Measurement-induced entanglement of two transmon qubits by a single photon

机译:单个光子的测量诱导纠缠两个transmon量子位

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On-demand creation of entanglement between distant qubits is a necessary ingredient for distributed quantum computation. We propose an entanglement scheme that allows for single-shot deterministic entanglement creation by detecting a single photon passing through a Mach–Zehnder interferometer with one transmon qubit in each arm. The entanglement production essentially relies on the fact that superconducting microwave structures allow one to achieve strong coupling between the qubit and the photon. By detecting the photon via a photon counter, a parity measurement is implemented and the wave function of the two qubits is projected onto a maximally entangled state. Most importantly, the entanglement generation is heralded such that our protocol is not susceptible to photon loss due to the indivisible nature of single photons.
机译:按需创建远距离量子位之间的纠缠是分布式量子计算的必要组成部分。我们提出了一种纠缠方案,该方案通过检测穿过马赫-曾德尔干涉仪的单个光子,每个臂中有一个transmon量子位,从而允许单次确定性纠缠创建。纠缠的产生基本上取决于以下事实:超导微波结构允许人们在量子位和光子之间实现强耦合。通过经由光子计数器检测光子,实现奇偶校验测量,并且两个量子位的波函数投影到最大纠缠状态。最重要的是,纠缠时代已经来临,由于单光子的不可分性,我们的协议不易遭受光子损失。

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