393 / 2019-01-28 08:04:09
Surface Plasmon-enhanced Light Absorption in Au Nanohole Array with Optical Cavity
Au nanohole array, light absorption, surface plasmon, optical cavity, FDTD
Final Paper
Yuchen Zhao / Xi'an University of Technology
Boyang Zhao / Xi'an University of Technology
Yanning Yuan / Xi'an University of Technology
Yurong Pu / Xi'an University of Technology
Jiangfan Liu / Xi'an University of Technology
Xiaoli Xi / Xi'an University of Technology
The light absorption in Au nanohole array with optical cavity is optimized by using finite-difference time-domain (FDTD) simulation. First, the transmission and reflection spectrums from an Au nanohole array, as well as the near field profiles at its surface, indicate that the strongest surface plasmon resonance occurs at approximately 672nm. Then, the comparison between the devices with and without nanohole array shows that half of the incident light energy can be absorbed owing to the surface plasmon-enhanced field confinement. Finally, an optical cavity, which has a thickness of 52nm, only one tenth of the wavelength, is designed to further improve the light absorption of the device. Therefore, the optimized device has greater field enhancement property, which creates 98.82% light absorption in 672nm.
Important Date
  • Conference Date

    Jun 12

    2019

    to

    Jun 14

    2019

  • Jun 12 2019

    Draft paper submission deadline

  • Jun 14 2019

    Registration deadline

Organized By
Xi'an University of Technology
Contact Information