Semiconductor nanodevice simulation by multidomain spectral method with Chebyshev, prolate spheroidal and Laguerre basis functions

被引:7
|
作者
Huang, Chia-Chien [1 ]
机构
[1] Ling Tung Univ, Dept Informat Technol, Taichung 40852, Taiwan
关键词
Schrodinger equation; Semiconductor nanodevice modeling; Spectral method; Prolate spheroidal wave functions; Laguerre-Gaussian functions; Chebyshev polynomials; REFRACTIVE-INDEX PROFILES; OPTICAL WAVE-GUIDES; QUANTUM-WELL; SCHRODINGER-EQUATION; POTENTIAL PROFILES; ELEMENT METHODS; ELECTRIC-FIELD; QUADRATURE; SOLVER;
D O I
10.1016/j.cpc.2008.10.010
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
A new approach based on spectral method with efficient basis functions is proposed in the paper to simulate semiconductor nanodevice by solving the Schrodinger equation. The computational domain is partitioned at heterojunctions into a number of subdomains. The envelope functions in subdomains are expanded by various efficient basis functions and then patched by the BenDaniel-Duke boundary conditions to preserve exponential order of accuracy, Importantly, the consideration to choose the basis functions depends on the oscillatory characteristics of envelope functions. Three kinds of basis functions including prolate spheroidal wave functions, Chebyshev polynomials, and Laguerre-Gaussian functions are used according to the mathematical features in this work. In addition, the determinations of optimum values of scaling factor in Laguerre-Gaussian functions and bandwidth parameter in prolate spheroidal wave functions are also discussed in detail. Several quantum well examples are simulated to validate the effectiveness of the present scheme. The relative errors of energy levels achieve the order of 10(-12) requiring merely a few grid points. (C) 2008 Elsevier B,V. All rights reserved.
引用
收藏
页码:375 / 383
页数:9
相关论文
共 50 条
  • [41] An Efficient Pseudo-Spectral Method Based On Rational-Chebyshev and Chebyshev Functions for Optical Waveguides Analysis
    Abdrabou, Amgad Abd El-Mohsen
    Heikal, A. M.
    Obayya, Salah S. A.
    2016 IEEE/ACES INTERNATIONAL CONFERENCE ON WIRELESS INFORMATION TECHNOLOGY AND SYSTEMS (ICWITS) AND APPLIED COMPUTATIONAL ELECTROMAGNETICS (ACES), 2016,
  • [42] An efficient spectral element method for semiconductor transient simulation
    1600, Applied Computational Electromagnetics Society (ACES) (31):
  • [43] An efficient 3-D spectral-element method for Schrodinger equation in nanodevice simulation
    Lee, JH
    Liu, QH
    IEEE TRANSACTIONS ON COMPUTER-AIDED DESIGN OF INTEGRATED CIRCUITS AND SYSTEMS, 2005, 24 (12) : 1848 - 1858
  • [44] An Efficient Spectral Element Method for Semiconductor Transient Simulation
    Bao, Huaguang
    Ding, Dazhi
    Bi, Junjian
    Gu, WenYang
    Chen, Rushan
    APPLIED COMPUTATIONAL ELECTROMAGNETICS SOCIETY JOURNAL, 2016, 31 (11): : 1337 - 1342
  • [45] Space-time Chebyshev spectral collocation method for nonlinear time-fractional Burgers equations based on efficient basis functions
    Huang, Yu
    Mohammadi Zadeh, Fatemeh
    Hadi Noori Skandari, Mohammad
    Ahsani Tehrani, Hojjat
    Tohidi, Emran
    MATHEMATICAL METHODS IN THE APPLIED SCIENCES, 2021, 44 (05) : 4117 - 4136
  • [46] Simulation of liquid crystal elastomers using Chebyshev spectral method with a new preconditioner
    Wei Zhu
    Advances in Computational Mathematics, 2015, 41 : 853 - 879
  • [47] Simulation of liquid crystal elastomers using Chebyshev spectral method with a new preconditioner
    Zhu, Wei
    ADVANCES IN COMPUTATIONAL MATHEMATICS, 2015, 41 (04) : 853 - 879
  • [48] Multidomain finite-difference and Chebyshev pseudospectral hybrid method for elastic wave simulation: two-dimensional case
    Sun, Wenliang
    Zhang, Wei
    Wang, Wenqiang
    Chen, Xiaofei
    GEOPHYSICAL JOURNAL INTERNATIONAL, 2024, 240 (01) : 426 - 445
  • [49] An implicit multidomain spectral collocation method for the simulation orf gas bearings between textured surfaces
    Kuria, IM
    Raad, PE
    JOURNAL OF TRIBOLOGY-TRANSACTIONS OF THE ASME, 1996, 118 (04): : 783 - 793
  • [50] Chebyshev collocation spectral lattice Boltzmann method for simulation of low-speed flows
    Hejranfar, Kazem
    Hajihassanpour, Mahya
    PHYSICAL REVIEW E, 2015, 91 (01):