Thermal meta-device in analogue of zero-index photonics

Y Li, KJ Zhu, YG Peng, W Li, T Yang, HX Xu, H Chen… - Nature materials, 2019 - nature.com
Inspired by the developments in photonic metamaterials, the concept of thermal
metamaterials has promised new avenues for manipulating the flow of heat. In photonics …

[引用][C] Thermal meta-device in analogue of zero-index photonics

Y Li, KJ Zhu, YG Peng, W Li, T Yang, HX Xu, H Chen… - Nature Materials, 2018 - cir.nii.ac.jp

Thermal meta-device in analogue of zero-index photonics

Y Li, KJ Zhu, YG Peng, W Li, T Yang, HX Xu… - Nature …, 2019 - ui.adsabs.harvard.edu
Inspired by the developments in photonic metamaterials, the concept of thermal
metamaterials has promised new avenues for manipulating the flow of heat. In photonics …

[PDF][PDF] Thermal meta-device in analogue of zero-index photonics

Y Li, KJ Zhu, YG Peng, W Li, T Yang, HX Xu, H Chen… - Heat transfer - ece.nus.edu.sg
Inspired by the developments in photonic metamaterials, the concept of thermal
metamaterials has promised new avenues for manipulating the flow of heat. In photonics …

Thermal meta-device in analogue of zero-index photonics

Y Li, KJ Zhu, YG Peng, W Li, T Yang… - Nature …, 2019 - pubmed.ncbi.nlm.nih.gov
Inspired by the developments in photonic metamaterials, the concept of thermal
metamaterials has promised new avenues for manipulating the flow of heat. In photonics …

[引用][C] Thermal meta-device in analogue of zero-index photonics

Y Li, KJ Zhu, YG Peng, W Li, T Yang, HX Xu, H Chen… - Nature Materials, 2018 - osti.gov

Thermal meta-device in analogue of zero-index photonics.

Y Li, KJ Zhu, YG Peng, W Li, T Yang, HX Xu… - Nature …, 2018 - europepmc.org
Inspired by the developments in photonic metamaterials, the concept of thermal
metamaterials has promised new avenues for manipulating the flow of heat. In photonics …

[PDF][PDF] Thermal meta-device in analogue of zero-index photonics

Y Li, KJ Zhu, YG Peng, W Li, T Yang, HX Xu, H Chen… - ece.nus.edu.sg
By performing a change of variable 𝑟=√ 𝐷/Ω𝑥 equation (3) is modified to the standard form:
𝑥2𝑓′′+ 𝑥𝑓′−(𝑖𝑥2+ 1) 𝑓= 0,(4) whose solution is the first order Kelvin's function1: f (x) …