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Coherent Radiation by Quantum Dots and Magnetic Nanoclusters

机译:量子点和磁性纳米能器的相干辐射

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The assemblies of either quantum dots or magnetic nanoclusters are studied. It is shown that such assemblies can produce coherent radiation. A method is developed for solving the systems of nonlinear equations describing the dynamics of such assemblies. The method is shown to be general and applicable to systems of different physical nature. Despite mathematical similarities of dynamical equations, the physics of the processes for quantum dots and magnetic nanoclusters is rather different. In a quantum dot assembly, coherence develops due to the Dicke effect of dot interactions through the common radiation field. For a system of magnetic clusters, coherence in the spin motion appears due to the Purcell effect caused by the feedback action of a resonator. Self-organized coherent spin radiation cannot arise without a resonator. This principal difference is connected with the different physical nature of dipole forces between the objects. Effective dipole interactions between the radiating quantum dots, appearing due to photon exchange, collectivize the dot radiation. While the dipolar spin interactions exist from the beginning, yet before radiation, and on the contrary, they dephase spin motion, thus destroying the coherence of moving spins. In addition, quantum dot radiation exhibits turbulent photon filamentation that is absent for radiating spins.
机译:研究了量子点或磁性纳米能器的组件。结果表明,这种组件可以产生相干辐射。开发了一种用于解决描述这种组件的动态的非线性方程系统的方法。该方法被证明是通用的并且适用于不同物理性质的系统。尽管有动态方程的数学相似性,但量子点和磁性纳米能器的方法的物理学相当不同。在量子点组件中,由于点相互作用通过公共辐射场的DICKE效应,相干性发育。对于磁簇的系统,由于由谐振器的反馈动作引起的斑块效应,旋转运动中的相干性出现。没有谐振器,不能出现自组织的相干旋转辐射。该主要差异与物体之间的偶极力的不同物理性质相连。辐射量子点之间的有效偶极相互作用,由于光子交换而出现,从而聚集点辐射。虽然从开始,辐射之前存在偶极自旋相互作用,并且相反,它们相当地旋转运动,从而破坏移动旋转的相干性。另外,量子点辐射表现出没有用于辐射旋转的湍流光子丝状。

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