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DIFFRACTIVE OPTICS, OPTICAL TECHNOLOGIES
Modeling of spontaneous emission in presence of cylindrical nanoobjects: the scattering matrix approach
V. V. Nikolaev, E. I. Girshova, M. A. Kaliteevskii Submicron Heterostructures for Microelectronics Research and Engineering Center, Russian Academy of Sciences, St. Petersburg
Abstract:
We propose a method of analysis of spontaneous emission of a quantum emitter (an atom, a luminescence center, a quantum dot) inside or in vicinity of a cylinder. At the focus of our method are analytical expressions for the scattering matrix of the cylindrical nanoobject. We propose the approach to electromagnetic field quantization based of eigenvalues and eigenvectors of the scattering matrix. The method is applicable for calculation and analysis of spontaneous emission rates and angular dependences of radiation for a set of different systems: semiconductor nanowires with quantum dots, plasmonic nanowires, cylindrical hollows in dielectrics and metals. Relative simplicity of the method allows obtaining analytical and semi-analytical expressions for both cases of radiation into external medium and into guided modes.
Keywords:
spontaneous emission, scattering matrix, cylindrical symmetry
Received: 06.04.2022 Accepted: 04.06.2022
Citation:
V. V. Nikolaev, E. I. Girshova, M. A. Kaliteevskii, “Modeling of spontaneous emission in presence of cylindrical nanoobjects: the scattering matrix approach”, Computer Optics, 47:1 (2023), 16–26
Linking options:
https://www.mathnet.ru/eng/co1097 https://www.mathnet.ru/eng/co/v47/i1/p16
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