论文标题

双Qubit-cavity Ultrastrong耦合系统中辐射的UltranArrow光谱线

Ultranarrow spectral line of the radiation in double qubit-cavity ultrastrong coupling system

论文作者

Zhao, Teng, Wu, Shao-ping, Yang, Guo-qing, Huang, Guang-ming, Li, Gao-Xiang

论文摘要

在量子模拟和量子计算中,超局部耦合(USC)系统具有非常重要的研究意义。在本文中,研究了具有两个量子位的电路QED系统的UltranArrow Spectrum,该QED系统具有两个Qubits ultronglongly耦合到单模腔。在USC的制度中,JC模型分解,量子性兔汉密尔顿量中的反向旋转术语导致能量谱中的水平抗横断。在避免级别的穿越点上选择一个单光子驾驶场,我们可以获得等效的四级打扮状态模型,在这种模型中,两个中间状态的耗散仅与Qubits衰减有关。由于这两个亚稳态状态的电子搁板,在空腔发射光谱中出现了一个狭窄的峰。此外,我们发现光谱狭窄的物理起源是真空引起的两个过渡途径之间的量子干扰。这种干扰效应将密度矩阵的缓慢腐烂不连贯的成分融合到边带方程中。该结果为USC系统中量子干扰效应的研究提供了可能性。

The ultrastrongly coupling (USC) system has very important research significance in quantum simulation and quantum computing. In this paper, the ultranarrow spectrum of a circuit QED system with two qubits ultrastrongly coupled to a single-mode cavity is studied. In the regime of USC, the JC model breaks down and the counter-rotating terms in the quantum Rabi Hamiltonian leads to the level anti-crossing in the energy spectrum. Choosing a single-photon driving field at the point of avoided-level crossing, we can get an equivalent four-level dressed state model, in which the dissipation of the two intermediate states is only related to the qubits decay. Due to the electron shelving of these two metastable states, a narrow peak appears in the cavity emission spectrum. Furthermore, we find that the physical origin for the spectral narrowing is the vacuum-induced quantum interference between two transition pathways. And this interference effect couples the slowly decaying incoherent components of the density matrix into the equations of the sidebands. This result provides a possibility for the study of quantum interference effect in the USC system.

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