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   anti-crossing effect dependence of misalign in ag nanoplate face-to-face dimer  
   
نویسنده yang hanning ,li siren ,liu peng ,sun xiudong
منبع plasmonics - 2018 - دوره : 13 - شماره : 3 - صفحه:1021 -1026
چکیده    Ag nanoplate dimers prepared by self-assembly method have attracted wide attentions. due to the random effect of this method, the misaligned face-to-face dimer is a common product. the results obtained through modeling the misaligned face-to-face dimer can provide a better understanding about the influence of the misalign effect on the optical property of the dimer. ag truncated nanoprism dimer studied using finite element method shows an anti-crossing effect with the misalign length less than the height of the truncated nanoprism in the bottom layer. as the truncated nanoprism in the upper layer replaced by a hexagonal nanoplate or nanodisk, the new dimers also show similar anti-crossing effects. this means that ag nanoplate face-to-face dimer possesses an anti-crossing effect as a function of the misalign length. and the anti-crossing effect is scarcely influenced by the shape of the nanoplate in the upper layer. these results are promising for surface enhanced raman spectra, surface enhanced fluorescence spectra, novel plasmon rulers, and tunable biosensors.
کلیدواژه anti-crossing effect ,misalign ,ag nanoplate ,face-to-face dimer
آدرس harbin institute of technology, institute of modern optics, department of physics, key laboratory of micro-optics and photonic technology of heilongjiang province, china. key laboratory of micro-nano optoelectronic information system of ministry of industry and information technology, china, harbin institute of technology, institute of modern optics, department of physics, key laboratory of micro-optics and photonic technology of heilongjiang province, china. key laboratory of micro-nano optoelectronic information system of ministry of industry and information technology, china, harbin institute of technology, institute of modern optics, department of physics, key laboratory of micro-optics and photonic technology of heilongjiang province, china. key laboratory of micro-nano optoelectronic information system of ministry of industry and information technology, china, harbin institute of technology, institute of modern optics, department of physics, key laboratory of micro-optics and photonic technology of heilongjiang province, china. key laboratory of micro-nano optoelectronic information system of ministry of industry and information technology, china. shanxi university, collaborative innovation center of extreme optics, china
 
     
   
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