Ultrathin multi-band planar metamaterial absorber based on standing wave resonances
We present a planar waveguide model and a mechanism based on standing wave resonances to interpret the unity absorptions of ultrathin planar metamaterial absorbers. The analytical model predicts that the available absorption peaks of the absorber are corresponding to the fundamental mode and only it...
Prif Awduron: | Peng, Xiao-Yu, Wang, Bing, Lai, Shumin, Zhang, Dao Hua, Teng, Jing Hua |
---|---|
Awduron Eraill: | School of Electrical and Electronic Engineering |
Fformat: | Journal Article |
Iaith: | English |
Cyhoeddwyd: |
2013
|
Pynciau: | |
Mynediad Ar-lein: | https://hdl.handle.net/10356/100404 http://hdl.handle.net/10220/10969 |
Eitemau Tebyg
-
An Ultrathin Polarization Free Asterick-Shaped Metamaterial Absorber with Quad-Band Characteristics
gan: Raghvenda Kumar Singh, et al.
Cyhoeddwyd: (2023-01-01) -
Multispectral terahertz sensing with highly flexible ultrathin metamaterial absorber
gan: Yahiaoui, Riad, et al.
Cyhoeddwyd: (2015) -
Highly porous microlattices as ultrathin and efficient impact absorbers
gan: Lai, Chang Quan, et al.
Cyhoeddwyd: (2018) -
Dual-band flexible metamaterial absorber working in 5G band
gan: Jianfei Zhu, et al.
Cyhoeddwyd: (2024-04-01) -
Using Planar Metamaterials to Design a Bidirectional Switching Functionality Absorber—An Ultra-Wideband Optical Absorber and Multi-Wavelength Resonant Absorber
gan: Shu-Han Liao, et al.
Cyhoeddwyd: (2024-02-01)