介观物理学
辐射传输
散射
物理
热辐射
计算物理学
统计物理学
量子力学
作者
B. X. Wang,Changying Zhao
出处
期刊:Annual Review of Heat Transfer
[Begell House]
日期:2020-01-01
卷期号:23: 231-353
被引量:7
标识
DOI:10.1615/annualrevheattransfer.2020031978
摘要
The dependent scattering effect (DSE), which arises from the wave nature of electromagnetic radiation, is a critical mechanism affecting the radiative properties of micro/nanoscale discrete disordered media (DDM). In the last a few decades, the approximate nature of the radiative transfer equation (RTE) leads to a plethora of investigations of the DSE in various DDM, ranging from fluidized beds, photonic glass, colloidal suspensions and snow packs, etc. In this article we give a general overview of the theoretical, numerical, and experimental methods and progress in the study of the DSE. We first present a summary of the multiple scattering theory of electromagnetic waves, including the analytic wave theory and Foldy-Lax equations, as well as its relationship with the RTE. Then we describe in detail the physical mechanisms that are critical to DSE and relevant theoretical considerations as well as numerical modeling methods. Experimental approaches to probe the radiative properties and relevant progress in the experimental investigations of the DSE are also discussed. In addition, we give a brief review of the studies on the DSE and other relevant interference phenomena in mesoscopic physics and atomic physics, especially the coherent backscattering cone, Anderson localization, as well as the statistics and correlations in disordered media. We expect that this review can provide profound and interdisciplinary insights to the understanding and manipulation of the DSE in disordered media for thermal engineering applications.
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