论文标题

2D纳米颗粒的辐射传热和辐射热能

Radiative heat transfer and radiative thermal energy for 2D nanoparticle ensembles

论文作者

Luo, Minggang, Zhao, Junming, Liu, Linhua, Antezza, Mauro

论文摘要

在多体辐射传热理论的框架中研究了2D纳米颗粒集合的辐射传热(RHT)和辐射热能(RTE)。我们考虑由不同材料制成的纳米颗粒:金属(AG),极地介电(SIC)或绝缘体金属相变材料(vo $ _2 $)。我们首先研究了两个平行的2D有限大小的方形纳米颗粒之间的RHT,特别注意多体相互作用(MBI)效应。我们系统地分析了表征RHT的不同物理状态。当$ p \llλ_t$时,系统内部电磁场的多个散射会导致MBI策略。 MBI效应以不同的方式表现出来,具体取决于$ d $:(a)如果$ d>λ_t$,由于每个2D内部的纯内集合MBI,总热力电导率较小,并且导热频谱频谱表现出一个峰值,这是由于两种典型的隔离nanapticles的典型峰。 (b)如果$ d <λ_t$,则有一个强大的同时内部和安装MBI。在这种制度中,除了对热电导光谱的定性效应外,对热电导有直接的定量效应,现在表现出新的第二峰。至于RTE,要正确地描述金属纳米颗粒发出的辐射,我们除了电气外,还得出了po弹载体的表达,包括磁性贡献。通过分析周期性和非周期性集合,我们表明由单个2D纳米颗粒集合发射的RTE对颗粒分布敏感。例如,我们看到由2D同心环形配置集合发射的RTE在合奏中心附近具有抑制作用。

Radiative heat transfer (RHT) and radiative thermal energy (RTE) for 2D nanoparticle ensembles are investigated in the framework of many-body radiative heat transfer theory. We consider nanoparticles made of different materials: metals (Ag), polar dielectrics (SiC) or insulator-metallic phase-change materials (VO$_2$). We start by investigating the RHT between two parallel 2D finite-size square-lattice nanoparticle ensembles, with particular attention to many-body interactions (MBI) effects. We systematically analyze the different physical regimes characterizing the RHT. When $p\ll λ_T$, a multiple scattering of the electromagnetic field inside the systems gives rise to a MBI regime. MBI effects manifest themselves in different ways, depending on $d$: (a) if $d > λ_T$, due to the pure intra-ensemble MBI inside each 2D ensemble, the total heat conductance is less affected, and the thermal conductance spectrum manifests a single peak which is nonetheless shifted with respect to the one typical of two isolated nanoparticles. (b) if $d < λ_T$, there is a strong simultaneous intra- and inter-ensemble MBI. In this regime there is a direct quantitative effect on the heat conductance, in addition to a qualitative effect on the thermal conductance spectrum which now manifests a new second peak. As for the RTE, to correctly describe the radiation emitted by metallic nanoparticles, we derive an expression of the Poynting vector including also magnetic contribution, in addition to the electric one. By analyzing both periodic and non-periodic ensembles, we show that the RTE emitted by a single 2D nanoparticle ensemble is sensitive to the particle distribution. As instance, we see that the RTE emitted by 2D concentric ring-configuration ensemble has an inhibition feature near the center of the ensemble.

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