论文标题

Ultrastrong耦合方案中的确定性单光子源

Deterministic single-photon source in the ultrastrong coupling regime

论文作者

Peng, Jie, Tang, Jianing, Tang, Pinghua, Ren, Zhongzhou, Tian, Junlong, Barraza, Nancy, Barrios, Gabriel Alvarado, Lamata, Lucas, Solano, Enrique, Albarran-Arriagada, F.

论文摘要

确定性的单光子源在量子信息协议中很重要且无处不在。但是,据我们所知,它们都没有在Ultrastrong轻质耦合方面工作,并且每个激发过程只能发出一个光子。我们在电路QED中提出了一个确定性的单光子源,可以在Ultrastrong耦合方面使用。在这里,两个量子位在一个过程中同时激发,并且可以通过任意时间分离顺序排放两个确定性的单光子。这是通过沿两个Quibit Rabi和Jaynes-Cummings模型的单光子解决方案的两个连续绝热转移发生的,该模型在整个耦合方面都具有恒定的特征性。与受刺激的拉曼绝热通道不同,系统在光子排放后自动回到另一个时期的初始状态。我们的方案可以同时达到统一单光子效率,无法区分和纯度。借助Stark Shift的帮助,可以在与谐振频率倒数成比例的时间内生成确定性的单光子。

Deterministic single-photon sources are important and ubiquitous in quantum information protocols. However, to the best of our knowledge, none of them work in the ultrastrong light-matter coupling regime, and each excitation process can only emit one photon. We propose a deterministic single-photon source in circuit QED which can work in the ultrastrong coupling regime. Here, two qubits are excited simultaneously in one process and two deterministic single photons can be sequentially emitted with an arbitrary time separation. This happens through two consecutive adiabatic transfers along the one-photon solutions of the two-qubit Rabi and Jaynes-Cummings model, which has constant eigenenergy in the whole coupling regime. Unlike the stimulated Raman adiabatic passage, the system goes back to the initial state of another period automatically after photon emission. Our scheme can approach unity single-photon efficiency, indistinguishability, and purity simultaneously. With the assistance of the Stark shift, a deterministic single photon can be generated within a time proportional to the inverse of the resonator frequency.

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