首页> 外文期刊>Brazilian journal of physics >Spontaneous Radiation of a Two-Level System Confined in a Reflective Spherical Shell Quantum Dot: Spontaneous Radiation of a Two-Level System in a Spherical Shell
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Spontaneous Radiation of a Two-Level System Confined in a Reflective Spherical Shell Quantum Dot: Spontaneous Radiation of a Two-Level System in a Spherical Shell

机译:两级系统局限于反射球形壳量子点的自发辐射:球形壳中双层系统的自发辐射

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摘要

Using a first-order time-dependent perturbation theory, we calculate the spontaneous emission rate of a two-level system trapped between perfectly reflecting concentric spheres. The emitter is represented by a two-level monopole coupled to a Hermitian massless scalar field satisfying Dirichlet boundary conditions in such quantum-confined low-dimensional structure. We obtained the appropriate Green's function evaluated in worldline of the atom which incorporates contributions from an infinite set of variable image charges. We provide an analytical expression for the decay rate to investigate the radiation process of the trapped atomic system. We perform a broad analysis of the dependence of the decay rate for different relations between the radii of spheres and the emitted radiation energy. We unveil regimes of strong suppression of the spontaneous emission rate as well as the development of irregular oscillations as a function of the quantum of emitted energy.
机译:使用一阶时间依赖的扰动理论,我们计算捕获在完美反射同心球之间的两级系统的自发发射率。 发射极由两级单极耦合到满足这种量子局限性的低维结构的麦克风边界条件的密封无麻标量场。 我们获得了在原子的世界各个线中评估的适当绿色函数,该函数包含来自无限变量图像电荷的贡献。 我们为衰减率提供分析表达,以研究被困原子系统的辐射过程。 我们对衰减率的依赖性进行了广泛的分析,对球体半径与发射辐射能量之间的不同关系的依赖性。 我们推出了强大抑制自发排放率的制度以及作为发射能量量子的函数的不规则振荡的发展。

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