Optical properties of one dimensional metal-air graded system

被引:2
|
作者
Calvo-Velasco, D. M. [1 ]
Porras-Montenegro, N. [1 ]
机构
[1] Univ Valle, Dept Fis, Cali 25360, Colombia
关键词
Graded; Photonic system; Metal; PHOTONIC CRYSTALS; PLASMA FREQUENCY; SILICON;
D O I
10.1016/j.physe.2018.09.013
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Using the scattering matrix formalism, in this work it is presented the numerical study of the optical properties of 1D photonic graded systems, constructed by multiple bi-layers of Drude-type metal and air, where the total amount of material, as well as the length proportion of them in each bi-layer are kept constant A graded variation of the bi-layers length, following an arithmetic progression defined in terms of a variable delta is considered. It is shown the formation of a transmission band that grows with the number of bi-layers and how the increase of the metallic plasma frequency or the size of the system modifies the transmission spectra, resembling the response of different photonic crystals. For the transverse electric (TE) and magnetic (TM) modes, it is presented the redistribution of the transmission peaks to higher frequencies as a function of the incident angle and delta. For TM mode, it is observed the appearance of maximum transmission peaks below the metallic plasma frequency, in an equal number as the air layers of the system, whose widths decrease with the augment of the incident angle. It is observed the variation of the transmission peaks with the increase of delta, which are shifted to higher frequencies, due to the material distribution which is mainly located on one side of the system. Additionally an analytical approach for graded structures is developed.
引用
收藏
页码:224 / 230
页数:7
相关论文
共 50 条
  • [31] Aqueous air cathodes and catalysts for metal-air batteries
    Timofeeva, Elena V.
    Segre, Carlo U.
    Pour, Gavin S.
    Vazquez, Matthew
    Patawah, Benard L.
    CURRENT OPINION IN ELECTROCHEMISTRY, 2023, 38
  • [32] Materials Design for Rechargeable Metal-Air Batteries
    Wang, Hao-Fan
    Xu, Qiang
    MATTER, 2019, 1 (03) : 565 - 595
  • [33] A Novel High Temperature Metal-Air Battery
    Drenckhahn, W.
    Greiner, H.
    Kuehne, M.
    Landes, H.
    Leonide, A.
    Litzinger, K.
    Lu, C.
    Schuh, C.
    Shull, J.
    Soller, T.
    BATTERIES AND ENERGY TECHNOLOGY (GENERAL SESSION) - 222ND ECS MEETING/PRIME 2012: IN HONOR OF JAMES MCBREEN, 2013, 50 (45): : 125 - 135
  • [34] Metal-organic frameworks and their derivatives for metal-air batteries
    Zhu, Bingjun
    Liang, Zibin
    Xia, Dingguo
    Zou, Ruqiang
    ENERGY STORAGE MATERIALS, 2019, 23 : 757 - 771
  • [35] Progress and Complexities in Metal-Air Battery Technology
    Ramasubramanian, Brindha
    Dalapati, Goutam Kumar
    Reddy, Mogalahalli Venkateshreddy Venkatashamy
    Zaghib, Karim
    Chellappan, Vijila
    Ramakrishna, Seeram
    ENERGY TECHNOLOGY, 2024, 12 (05)
  • [36] METAL-AIR BATTERIES - THEIR STATUS AND POTENTIAL - REVIEW
    BLURTON, KF
    SAMMELLS, AF
    JOURNAL OF POWER SOURCES, 1979, 4 (04) : 263 - 279
  • [37] Achieving low overpotentials in metal-air batteries
    Wu, Yiying
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2014, 248
  • [38] Disproportionation of Sodium Superoxide in Metal-Air Batteries
    Sheng, Chuanchao
    Yu, Fengjiao
    Wu, Yuping
    Peng, Zhangquan
    Chen, Yuhui
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2018, 57 (31) : 9906 - 9910
  • [39] Progress in development of flexible metal-air batteries
    Sumboja, Afriyanti
    Ge, Xiaoming
    Zong, Yun
    Liu, Zhaolin
    FUNCTIONAL MATERIALS LETTERS, 2016, 9 (02)
  • [40] Metal-air batteries with carbonaceous air electrodes and nonmetallic catalysts
    Korovin, Nikolay
    NEW CARBON BASED MATERIALS FOR ELECTROCHEMICAL ENERGY STORAGE SYSTEMS: BATTERIES, SUPERCAPACITORS AND FUEL CELLS, 2006, 229 : 137 - 149