Institute for Nanoscale Technology, Department of Physics and Advanced Materials, University of Technology Sydney, PO Box 123, Broadway, NSW 2007, Australia.
J Phys Condens Matter. 2010 Apr 14;22(14):143201. doi: 10.1088/0953-8984/22/14/143201. Epub 2010 Mar 25.
Alternative materials are required to enhance the efficacy of plasmonic devices. We discuss the optical properties of a number of alloys, doped metals, intermetallics, silicides, metallic glasses and high pressure materials. We conclude that due to the probability of low frequency interband transitions, materials with partially occupied d states perform poorly as plasmonic materials, ruling out many alloys, intermetallics and silicides as viable. The increased probability of electron-electron and electron-phonon scattering rules out many doped and glassy metals.
需要使用替代材料来提高等离子体器件的效率。我们讨论了一些合金、掺杂金属、金属间化合物、硅化物、金属玻璃和高压材料的光学性质。我们的结论是,由于低频带间跃迁的可能性,部分占据 d 态的材料作为等离子体材料性能不佳,从而排除了许多合金、金属间化合物和硅化物作为可行的选择。电子-电子和电子-声子散射的概率增加排除了许多掺杂金属和金属玻璃。