• DocumentCode
    969444
  • Title

    Time-Dependent Transport in Low-Dimensional Systems—A Numerical Solution Using the Nonequilibrium Green´s Functions

  • Author

    He, Yuhui ; Hou, Danqiong ; Liu, Xiaoyan ; Han, Ruqi ; Chen, Jie

  • Author_Institution
    Inst. of Microelectron., Peking Univ., Beijing
  • Volume
    6
  • Issue
    1
  • fYear
    2007
  • Firstpage
    56
  • Lastpage
    62
  • Abstract
    In this paper, we present a novel numerical solution to analyze time-dependent transport in low-dimensional systems, such as one-dimensional (1-D) quantum dot and quasi-one-dimensional (Q1D) carbon nanotube systems, by using the nonequilibrium Green´s functions (NEGF). The novelty of proposed approach is to jointly handle the NEGF in both the time-domain and the real-space-domain in a recursive fashion. The time-domain recursive approach is a straightforward approach to solve time-dependent transport problems, while the real-space recursive approach makes the calculations feasible for arbitrary-length 1-D and Q1D systems. To verify our proposed algorithm, we apply this method to explore the transient and ac transport properties of a sample 1-D quantum-dot array system. We will present in this paper the simulated electrical current curves, J (t), in response to various pulses and sinusoid waveforms. From these simulation results, we can obtain the delay and distortion information. We will then discuss how the length of a quantum-dot array and the hopping energy affect the transport behavior. The knowledge we gain from this project will help researchers to evaluate the electrical properties of 1-D and Q1D materials. The knowledge can also benefit the making of time-dependent 1-D and Q1D nanoelectronic devices
  • Keywords
    Green´s function methods; carbon nanotubes; electric current; hopping conduction; nanoelectronics; nanotube devices; quantum dots; 1D quantum-dot array system; C; ac transport properties; arbitrary-length 1D systems; delay information; distortion information; electrical properties; hopping energy affect; low-dimensional systems; nonequilibrium Green´s functions; numerical solution; quasi1D carbon nanotube systems; real-space recursive approach; simulated electrical current curves; sinusoid waveforms; time-dependent 1D devices; time-dependent quasinanoelectronic devices; time-dependent transport; transient properties; Carbon nanotubes; Conductors; Delay; Distortion; Electrodes; Electrons; Green´s function methods; Helium; Quantum dots; Time domain analysis; AC transport properties of nanodevices; nonequilibrium Green´s function; transient;
  • fLanguage
    English
  • Journal_Title
    Nanotechnology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-125X
  • Type

    jour

  • DOI
    10.1109/TNANO.2006.886780
  • Filename
    4064874