Andreev reflection of fractional quantum Hall quasiparticles

被引:21
|
作者
Hashisaka, M. [1 ,2 ]
Jonckheere, T. [3 ]
Akiho, T. [1 ]
Sasaki, S. [1 ]
Rech, J. [3 ]
Martin, T. [3 ]
Muraki, K. [1 ]
机构
[1] NTT Corp, NTT Basic Res Labs, Atsugi, Kanagawa, Japan
[2] JST, PRESTO, 4-1-8 Honcho, Kawaguchi, Saitama, Japan
[3] Aix Marseille Univ, Univ Toulon, CPT, CNRS, Marseille, France
关键词
EDGE; STATES; TRANSPORT; NU=1/3;
D O I
10.1038/s41467-021-23160-6
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Electron correlation in a quantum many-body state appears as peculiar scattering behaviour at its boundary, symbolic of which is Andreev reflection at a metal-superconductor interface. Despite being fundamental in nature, dictated by the charge conservation law, however, the process has had no analogues outside the realm of superconductivity so far. Here, we report the observation of an Andreev-like process originating from a topological quantum many-body effect instead of superconductivity. A narrow junction between fractional and integer quantum Hall states shows a two-terminal conductance exceeding that of the constituent fractional state. This remarkable behaviour, while theoretically predicted more than two decades ago but not detected to date, can be interpreted as Andreev reflection of fractionally charged quasiparticles. The observed fractional quantum Hall Andreev reflection provides a fundamental picture that captures microscopic charge dynamics at the boundaries of topological quantum many-body states. Andreev reflection is normally known to occur at a metal-superconductor interface. Here, Hashisaka et al. observe an Andreev-like process in a narrow junction between fractional and integer quantum Hall states originating from a topological quantum many-body effect instead of superconductivity.
引用
收藏
页数:7
相关论文
共 50 条
  • [31] Quasiparticle Andreev scattering in the ν = 1/3 fractional quantum Hall regime
    P. Glidic
    O. Maillet
    C. Piquard
    A. Aassime
    A. Cavanna
    Y. Jin
    U. Gennser
    A. Anthore
    F. Pierre
    Nature Communications, 14
  • [32] Quasiparticle Andreev scattering in the ν=1/3 fractional quantum Hall regime
    Glidic, P.
    Maillet, O.
    Piquard, C.
    Aassime, A.
    Cavanna, A.
    Jin, Y.
    Gennser, U.
    Anthore, A.
    Pierre, F.
    NATURE COMMUNICATIONS, 2023, 14 (01)
  • [33] Reversed-spin quasiparticles in fractional quantum Hall systems and their effect on photoluminescence
    Szlufarska, I
    Wójs, A
    Quinn, JJ
    PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2002, 12 (1-4): : 59 - 62
  • [34] Perfect Crossed Andreev Reflection in Dirac Hybrid Junctions in the Quantum Hall Regime
    Zhang, Song-Bo
    Trauzettel, Bjoern
    PHYSICAL REVIEW LETTERS, 2019, 122 (25)
  • [35] Andreev Reflection in the Quantum Hall Regime at an Al/InAs Junction on a Cleaved Edge
    Akiho, Takafumi
    Irie, Hiroshi
    Nakazawa, Yusuke
    Sasaki, Satoshi
    Kumada, Norio
    Muraki, Koji
    NANO LETTERS, 2024, 24 (46) : 14790 - 14796
  • [36] Supercurrent-enabled Andreev reflection in a chiral quantum Hall edge state
    Michelsen, Andreas Bock
    Recher, Patrik
    Braunecker, Bernd
    Schmidt, Thomas L.
    PHYSICAL REVIEW RESEARCH, 2023, 5 (01):
  • [37] REFLECTION OF EDGE STATES IN THE FRACTIONAL QUANTUM HALL REGIME
    FROST, JEF
    LIANG, CT
    MACE, DR
    SIMMONS, MY
    PEPPER, M
    RITCHIE, DA
    SOLID STATE COMMUNICATIONS, 1995, 96 (06) : 327 - 331
  • [38] Crossed Andreev reflections in superconductor and fractional quantum Hall liquids hybrid system
    Zuo, Zheng-Wei
    Sheng, L.
    Xing, D. Y.
    SOLID STATE COMMUNICATIONS, 2014, 184 : 17 - 20
  • [39] Transport of fractional Hall quasiparticles through an antidot
    Merlo, Matteo
    Braggio, Alessandro
    Magnoli, Nicodemo
    Sassetti, Maura
    PHYSICAL REVIEW B, 2007, 75 (19)
  • [40] Unusual Quasiparticles and Tunneling Conductance in Quantum Point Contacts in ν=2/3 Fractional Quantum Hall Systems
    Ponomarenko, Vadim
    Lyanda-Geller, Yuli
    PHYSICAL REVIEW LETTERS, 2024, 133 (07)