首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Influence of impurity on the rate of single photon superradiance and photon transport in disordered N qubit chain
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Influence of impurity on the rate of single photon superradiance and photon transport in disordered N qubit chain

机译:杂质对单一光子超长率和光子传输在无序N Qubit链中的影响

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摘要

We investigate the rate of superradiant emission for a number of artificial atoms (qubits) embedded in a one-dimensional open waveguide. More specifically, we study the 1D (N +1)- qubit chain where N qubits are identical with respect to their excitation frequency Omega but have different rates of spontaneous emission Gamma(n), and a single impurity qubit which is different from N qubits by its excitation frequency Omega(p) and the rate of spontaneous emission Gamma(p). We performed exact diagonalization of Hamiltonian and showed that the system has two hybridized collective states one of which accumulates the widths of all qubits. The energy spectrum of these states and corresponding probabilities are investigated as a function of the frequency detuning between the impurity and other qubits in a chain. It is shown that the inclusion of the impurity qubit alters the resonance widths of the system if the total width overlaps the frequency detuning between qubits and the impurity. In this case the resonance widths experience a significant repulsion. The photon transmission through disordered N-qubit chain with the impurity qubit is also considered. It is shown that a single photon transport through this system is described by a simple expression which predicts for specific photon frequency the existence of a complete transmission peak and transparency window between frequencies Omega and Omega(p).
机译:我们研究了嵌入在一维开放波导中的许多人造原子(Qubits)的超大发射率。更具体地说,我们研究了1D(n +1) - qubit链,其中n qubits相对于其激发频率ω,但具有不同的自发发射伽马(n)率,以及不同与n qubits不同的杂质qubit通过其激发频率ω(p)和自发排放伽马速率(p)。我们对Hamiltonian进行了精确的对角化,并显示系统具有两个杂交的集体状态,其中一个杂交的集体状态累积了所有Qubits的宽度。作为链条中杂质和其他QUBITS之间的频率静脉的函数研究了这些状态和相应概率的能谱。结果表明,如果总宽度重叠QUBITS和杂质之间的频率静脉,则杂质量子位的包含改变了系统的谐振宽度。在这种情况下,共振宽度经历了显着的排斥。还考虑了通过无序的N-CUTBit链传输与杂质量子比特的光子传输。结果表明,通过该系统的单个光子传输是通过预测特定光子频率的简单表达式来描述频率Omega和Omega(P)之间的完整传输峰值和透明窗口的存在。

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