Global ETD Search

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Showing 1 to 4 of 4 for “"FDTD analysis"”.

  1. FDTD Analysis of Plasmonic and Nanojet Enhanced Photodetectors for Improved Performance

    The finite-difference time-domain (FDTD) technique is a very flexible and robust means to solve problems spanning a broad range of applications (defense, communication, computing, semiconductor devices and biomedicine), especially where geometrical complexities, nonlinearities and multiphysics …

    unm Repository record for FDTD Analysis of Plasmonic and Nanojet Enhanced Photodetectors for Improved Performance (opens in a new tab)

  2. Monolithic Integration Of Dual Optical Elements On High Power Semicond

    … a combination of finite-difference time domain (FDTD) analysis of the nonuniform grating and a self-consistent model of the broad area active region. Improvement of the near-field intensity profile in good agreement with the FDTD model is demonstrated by varying the duty cycle from 20% to 55% and …

    ucf

  3. Modeling Electromagnetic Wave Propagation in Electrically Large Structures

    … complex snow media is analyzed with a hybrid FDTD/radiative transfer model. FDTD is used to compute phase matrices and extinction coefficients required for radiative transfer. Comparison with exact analytical methods proves the validity of the FDTD method for modest domain sizes ([5λ^3]) and …

    byu Repository record for Modeling Electromagnetic Wave Propagation in Electrically Large Structures (opens in a new tab)

  4. Surface plasmons for enhanced metal-semiconductor-metal photodetectors

    … investigated. Finite Difference Time Domain (FDTD) simulation is used to simulate and design plasmonic MSM-PDs devices for maximal field enhancement. The simulation results show more than 10 times enhancement for the plasmonic nano-grating MSM-PD compared with the device without the metal …

    edithcowan Repository record for Surface plasmons for enhanced metal-semiconductor-metal photodetectors (opens in a new tab)