most citedPolariton Topological Transition Effects on Radiative Heat Transfer

44 citations · 47 across the 6 of their papers we have counts for

collaborators

6 papers

physics.optics2021

Chirality of plasmonic metasurfaces with rectangular holes

Biyuan Wu, Mingjun Wang, Yasong Sun +3

Chiral response is of tremendous importance to many fields, such as analytical chemistry, polarization manipulation and biological sensing. Here, a chiral metasurface based on rect…

physics.optics20212 cited

Coupling between hyperbolic phonon polaritons excited in two ultrathin hBN sheets

Xiaohu Wu, Chengshuai Su, Kezhang Shi +2

In this work, the hyperbolic phonon polaritons (HPPs) in ultrathin hBN sheets are numerically studied. The dispersion relation and distribution of electric field are calculated to…

physics.optics2021

Rotation-induced significant modulation of near-field radiative heat transfer between hyperbolic nanoparticles

Yang Hu, Yasong Sun, Zhiheng Zheng +3

Modulation of near-field radiative heat transfer (NFRHT) with rotated anisotropic hBN and MoO3 nanoparticles (NPs) are investigated. The spectral heat power, total heat power and e…

cond-mat.mes-hall2021

Near-complete violation of Kirchhoff s law in thermal radiation in ultrathin magnetic Weyl semimetal films

Jun Wu, Zhongmin Wang, Han Zhai +3

The ability to break Kirchhoff s law is of fundamental importance in thermal radiation. Various nonreciprocal emitters have been proposed to break the balance between absorption an…

physics.optics20211 cited

Nonreciprocal thermal radiation based on Fibonacci quasi-periodic structures

Jun Wu1, Feng Wu, Tiancheng Zhao +2

To violate Kirchhoff s law is very important in the areas of thermal radiation. However, due to the weak nonreciprocity in natural materials, it is necessary to engineer novel stru…

physics.optics202044 cited

Polariton Topological Transition Effects on Radiative Heat Transfer

ChengLong Zhou, XiaoHu Wu, Yong Zhang +2

Twisted two-dimensional bilayer materials exhibit many exotic physical phenomena. Manipulating the twist angle between the two layers enables fine control of the physical structure…