Narrow-band controllable sources of IR emission based on one-dimensional magneto-optical photonic structures

E. Venger, V. Morozhenko
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Abstract

Creation of controllable narrow-band emission sources for the mid- and long-wavelength infrared ranges is one of the primary tasks of infrared technology. In this paper, we propose and demonstrate non-luminescent (thermal) magnetically controllable sources of infrared emission based on semiconductor magneto-optical photonic structures (MOPS). It is shown that interference effects cause narrow-band thermal emission spectrum of such sources, and magnetic field makes it possible to effectively control the spectral and amplitude characteristics of emissivity in the mid- and long-wavelength infrared range. Influence of the MOPS composition and design on the source emissive characteristics is studied. Using the obtained results, the designs of A3B5 semiconductor compounds based sources with dynamically tunable spectrum and amplitude modulation of emission are proposed. Theoretical modeling has shown the possibility of dynamic control of their emission parameters by achievable magnetic fields. Such sources may be used in environmental monitoring systems, medicine, forensics, infrared spectroscopy, etc.
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基于一维磁光光子结构的窄带可控红外发射源
在中长波红外范围内建立可控窄带发射源是红外技术的主要任务之一。本文提出并演示了基于半导体磁光光子结构(MOPS)的非发光(热)磁可控红外发射源。研究表明,干扰效应会导致这类光源的窄带热发射光谱,磁场可以有效控制发射率在中长波红外范围内的光谱和幅度特性。研究了MOPS的组成和设计对源发射特性的影响。在此基础上,提出了基于A3B5半导体化合物的光谱动态可调和发射幅度调制光源的设计。理论建模表明,利用可获得的磁场对其发射参数进行动态控制是可能的。这种光源可用于环境监测系统、医学、法医学、红外光谱等。
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