Time-resolved charge detection and back-action in quantum circuits

被引:3
|
作者
Ihn, T. [1 ]
Gustavsson, S. [1 ]
Gasser, U. [1 ]
Leturcq, R. [1 ]
Shorubalko, I. [1 ]
Ensslin, K. [1 ]
机构
[1] ETH, Solid State Phys Lab, CH-8093 Zurich, Switzerland
来源
关键词
Quantum point contacts; Charge detection; Quantum dots; Back-action; Quantum measurement; ELECTRON-SPIN; POINT-CONTACT; SHOT-NOISE; DOT; CONDUCTORS;
D O I
10.1016/j.physe.2009.11.087
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
This paper reviews investigations of back-action phenomena occurring in systems, where quantum dots are capacitively coupled to quantum point contact charge detectors. Two back-action mechanisms are discussed: first, back-action caused by shot-noise in the quantum point contact, and second, indirect back-action via ohmic heating of the crystal lattice. Experiments focusing on the first aspect consist of the measurement of shot noise at finite frequencies in the range between 0.01 and 0.7 THz. Experiments of the second kind result in the observation of finite current through a double quantum dot system at zero applied source-drain bias voltage. Such a current is possible in the presence of a phonon-system which is not in thermodynamic equilibrium with the electronic system. The double quantum dot acts as a thermoelectric engine extracting electric power from the temperature difference between the two thermal reservoirs. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:803 / 808
页数:6
相关论文
共 50 条
  • [1] Time-resolved charge detection in graphene quantum dots
    Guettinger, J.
    Seif, J.
    Stampfer, C.
    Capelli, A.
    Ensslin, K.
    Ihn, T.
    PHYSICAL REVIEW B, 2011, 83 (16)
  • [2] Measurement Back-Action in Quantum Point-Contact Charge Sensing
    Kueng, Bruno
    Gustavsson, Simon
    Choi, Theodore
    Shorubalko, Ivan
    Pfaeffli, Oliver
    Hassler, Fabian
    Blatter, Gianni
    Reinwald, Matthias
    Wegscheider, Werner
    Schoen, Silke
    Ihn, Thomas
    Ensslin, Klaus
    ENTROPY, 2010, 12 (07) : 1721 - 1732
  • [3] Quantum interference and phonon-mediated back-action in lateral quantum-dot circuits
    G. Granger
    D. Taubert
    C. E. Young
    L. Gaudreau
    A. Kam
    S. A. Studenikin
    P. Zawadzki
    D. Harbusch
    D. Schuh
    W. Wegscheider
    Z. R. Wasilewski
    A. A. Clerk
    S. Ludwig
    A. S. Sachrajda
    Nature Physics, 2012, 8 (7) : 522 - 527
  • [4] Phonon-mediated back-action of a charge readout on a double quantum dot
    Gasser, U.
    Gustavsson, S.
    Kueng, B.
    Ensslin, K.
    Ihn, T.
    NANOTECHNOLOGY, 2010, 21 (27)
  • [5] Quantum interference and phonon-mediated back-action in lateral quantum-dot circuits
    Granger, G.
    Taubert, D.
    Young, C. E.
    Gaudreau, L.
    Kam, A.
    Studenikin, S. A.
    Zawadzki, P.
    Harbusch, D.
    Schuh, D.
    Wegscheider, W.
    Wasilewski, Z. R.
    Clerk, A. A.
    Ludwig, S.
    Sachrajda, A. S.
    NATURE PHYSICS, 2012, 8 (07) : 522 - 527
  • [6] Cooling a nanomechanical resonator with quantum back-action
    Naik, A.
    Buu, O.
    LaHaye, M. D.
    Armour, A. D.
    Clerk, A. A.
    Blencowe, M. P.
    Schwab, K. C.
    NATURE, 2006, 443 (7108) : 193 - 196
  • [7] Light as a quantum back-action nullifying meter
    Davuluri, Sankar
    Li, Yong
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2022, 39 (12) : 3121 - 3127
  • [8] Exchange statistics, charge detection and back-action dephasing by a mesoscopic beam collider
    Lee, Youngnae
    Khym, Gyong Luck
    Kang, Kicheon
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2008, 20 (39)
  • [9] Cooling a nanomechanical resonator with quantum back-action
    A. Naik
    O. Buu
    M. D. LaHaye
    A. D. Armour
    A. A. Clerk
    M. P. Blencowe
    K. C. Schwab
    Nature, 2006, 443 : 193 - 196
  • [10] Back-action cancellation in interferometers by quantum locking
    Courty, JM
    Heidmann, A
    Pinard, M
    EUROPHYSICS LETTERS, 2003, 63 (02): : 226 - 232