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首页> 外文期刊>Physica Scripta: An International Journal for Experimental and Theoretical Physics >Thermodynamic functions of fluctuating electromagnetic fields within a heterogeneous system
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Thermodynamic functions of fluctuating electromagnetic fields within a heterogeneous system

机译:异构系统内波动电磁场的热力学函数

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Thermodynamic functions of the equilibrium fluctuating electromagnetic fields within a nonuniform dispersive and absorptive system are calculated and discussed. The near-interface subsystem of the fields deserves special attention. Density of states and spectral characteristics of thermal surface waves in equilibrium at the interface between two media, one of them being lossy, are calculated for the first time. Thermodynamic characteristics of thermal fields are calculated both in vacuum and inside bulk lossy material described by spatially local and nonlocal optical responses. It was shown that the higher the temperature of the system, the smaller the relative contribution of the evanescent part of thermodynamic functions of thermal fields in vacuum compared with those of the black-body radiation. It is suggested that the evanescent part of the thermally excited fields can be treated as the physical transition layer localized near the interface between two subsystems of photons in vacuum and photons in bulk matter. In fact, such a layer forms a physical boundary between those subsystems of thermal photons in equilibrium.
机译:计算并讨论了非均匀分散和吸收系统内平衡波动电磁场的热力学函数。这些领域的近接口子系统值得特别关注。首次计算了两种介质之间的界面处处于平衡状态的热面波的状态密度和光谱特性,其中一种是有损的。热场的热力学特性是在真空中和内部有损耗的材料中计算的,这些材料由空间局部和非局部光学响应描述。结果表明,与黑体辐射相比,系统温度越高,真空中热场的热力学函数的渐逝部分的相对贡献越小。建议将热激发场的e逝部分看作是位于真空中的光子和本体中的光子的两个子系统之间的界面附近的物理过渡层。实际上,这种层在平衡的热光子子系统之间形成了物理边界。

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