Theory of heat dissipation in molecular electronics

被引:85
|
作者
Pecchia, A. [1 ]
Romano, G. [1 ]
Di Carlo, A. [1 ]
机构
[1] Univ Roma Tor Vergata, Dept Elect Engn, I-00133 Rome, Italy
关键词
D O I
10.1103/PhysRevB.75.035401
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this paper we discuss various aspects of energy dissipation and heating of molecular junctions under bias. First-principles calculations based on density functional and nonequilibrium Green's functions are used to compute the power emitted in a molecule due to scattering with localized vibrations. In this context, we present a perturbation scheme in the electron-phonon coupling, that is found numerically reliable for the computation of the emitted power, because intrinsically it is current conserving. The balance between the rate of phonons emitted and dissipated into the contacts allows the computation of the steady-state distribution of phonon quanta localized in the junction, from which we extract the local temperature reached by the molecule. The model includes a microscopic approach for the computation of the phonon decay rate, accounting for the dynamical coupling between the vibrational modes localized on the molecule and the contact phonons. The method is applied to the discussion of several limiting conditions and trends, depending on electron-phonon coupling, incoherent transmission and phonon dissipation rate using both analytical results and numerical calculations.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Heat Dissipation in Nanocomputing: Lower Bounds From Physical Information Theory
    Ercan, Ilke
    Anderson, Neal G.
    IEEE TRANSACTIONS ON NANOTECHNOLOGY, 2013, 12 (06) : 1047 - 1060
  • [32] Entransy dissipation theory optimization analysis of square microchannel heat sink
    Ji Y.
    Yun H.
    Geng W.
    Li M.
    Yu C.
    Chen B.
    Yun, Heming (yunheming@163.com); Geng, Wenguang (gengwg@sderi.cn), 1600, Materials China (71): : 166 - 175
  • [33] Application of entransy dissipation theory in optimization of latent heat storage process
    Tao, Yu-Bing
    He, Ya-Ling
    Liu, Yong-Kun
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2014, 35 (05): : 973 - 977
  • [34] LINEAR THEORY OF HEAT CONDUCTION AND DISSIPATION IN LIQUID CRYSTALS OF NEMATIC TYPE
    DAVISON, L
    PHYSICAL REVIEW, 1969, 180 (01): : 232 - &
  • [35] MICROSWITCHES IN MOLECULAR ELECTRONICS - FROM MOLECULAR CONDUCTORS TO MOLECULAR ELECTRONICS
    ROTH, S
    INTERNATIONAL JOURNAL OF ELECTRONICS, 1992, 73 (05) : 1019 - 1026
  • [36] THEORY OF MOLECULAR MACHINES .2. ENERGY-DISSIPATION FROM MOLECULAR MACHINES
    SCHNEIDER, TD
    JOURNAL OF THEORETICAL BIOLOGY, 1991, 148 (01) : 125 - 137
  • [37] Heat dissipation and non-equilibrium phonon distributions in molecular devices
    Pecchia, A.
    Romano, G.
    Gagliardi, A.
    Frauenheim, Th.
    Di Carlo, A.
    JOURNAL OF COMPUTATIONAL ELECTRONICS, 2007, 6 (1-3) : 335 - 339
  • [38] Molecular dynamics simulation of microstructure evolution and heat dissipation of nanoscale friction
    Chen, Kai
    Wang, Liangbi
    Chen, Yitung
    Wang, Qiuwang
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2017, 109 : 293 - 301
  • [39] Heat dissipation and non-equilibrium phonon distributions in molecular devices
    A. Pecchia
    G. Romano
    A. Gagliardi
    Th. Frauenheim
    A. Di Carlo
    Journal of Computational Electronics, 2007, 6 : 335 - 339
  • [40] Molecular Cooling Fan: Factors for Optimization of Heat Dissipation Devices and Applications
    Eyassu, Tsehaye
    Hsiao, Tun-Jen
    Henderson, Kimberly
    Kim, Taesam
    Lin, Chhiu-Tsu
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2014, 53 (50) : 19550 - 19558