DISORDERING OF THE CORRELATED STATE OF THE QUANTUM HALL BILAYER AT FILLING FACTOR ν=1

被引:3
|
作者
Papic, Z. [1 ,2 ]
Milovanovic, M. V. [1 ]
机构
[1] Univ Belgrade, Inst Phys, Comp Sci Lab, Belgrade 11000, Serbia
[2] Univ Paris 11, CNRS, UMR 8502, Phys Solides Lab, F-91405 Orsay, France
来源
MODERN PHYSICS LETTERS B | 2012年 / 26卷 / 21期
关键词
Fraction quantum Hall effect; quantum Hall bilayer; Chern-Simons theory; exact diagonalization; superfluid disordering; PHASE-TRANSITION;
D O I
10.1142/S0217984912501345
中图分类号
O59 [应用物理学];
学科分类号
摘要
The phase diagram of a quantum Hall bilayer at total filling nu = 1 contains an incompressible superfluid for small distances d between the layers, as well as the compressible phase corresponding to two uncoupled Fermi liquids for large d. Using exact diagonalization on the sphere and torus geometry, we investigate a long-standing question of the nature of the transition between the two regimes, and the possibility for the existence of a paired phase in the transition region. We find considerable evidence for a direct transition between the superfluid and the Fermi liquid phase, based in particular on the behavior of the ground state energy on the sphere (including appropriate finite-size corrections) as a function of d. At the critical distance d(C) approximate to 1.6l(B) the topological number ("shift") of the ground state changes, suggesting that tuning the layer separation d in experiment likely leads to a direct transition between the superfluid and the Fermi liquid phase.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] Phase diagram of the ?=2 quantum Hall state in bilayer graphene
    Khanna, Udit
    Huang, Ke
    Murthy, Ganpathy
    Fertig, H. A.
    Watanabe, Kenji
    Taniguchi, Takashi
    Zhu, Jun
    Shimshoni, Efrat
    PHYSICAL REVIEW B, 2023, 108 (04)
  • [42] Reentrant quantum Hall effect and anisotropic transport in a bilayer system at high filling factors
    Gusev, G. M.
    Bakarov, A. K.
    Lamas, T. E.
    Portal, J. C.
    PHYSICAL REVIEW LETTERS, 2007, 99 (12)
  • [43] Interlayer correlations versus intralayer correlations in a Quantum Hall bilayer at total filling one
    Möller, G
    Simon, SH
    JOURNAL DE PHYSIQUE IV, 2005, 131 : 283 - 284
  • [44] Coulomb Correlations as the Root Cause of the Ferromagnetic Transition in a Quantum Hall State with Filling Factor v = 2
    Vankov A.B.
    Kukushkin I.V.
    Bulletin of the Russian Academy of Sciences: Physics, 2021, 85 (02) : 154 - 158
  • [45] Quantum Hall to Insulator Transition in the Bilayer Quantum Hall Ferromagnet
    Murthy, Ganpathy
    Sachdev, Subir
    PHYSICAL REVIEW LETTERS, 2008, 101 (22)
  • [46] Onset temperature for the Kosterlitz-Thouless transition in the vt=1 bilayer quantum Hall state
    Terasawa, D.
    Fukuda, A.
    Morikawa, T.
    Zheng, Y. D.
    Sawada, A.
    Ezawa, Z. F.
    PHYSICAL REVIEW B, 2012, 86 (16):
  • [47] High-temperature expansion of the spin polarization in the quantum Hall regime at filling factor ν=1
    Kasner, M
    PHYSICA E, 1997, 1 (1-4): : 71 - 74
  • [48] Current cross correlations in a quantum Hall collider at filling factor two
    Idrisov, Edvin G.
    Levkivskyi, Ivan P.
    Sukhorukov, Eugene, V
    Schmidt, Thomas L.
    PHYSICAL REVIEW B, 2022, 106 (08)
  • [49] Dynamics and phase diagram of the ν=0 quantum Hall state in bilayer graphene
    Gorbar, E. V.
    Gusynin, V. P.
    Miransky, V. A.
    PHYSICAL REVIEW B, 2010, 81 (15):
  • [50] Even-denominator fractional quantum Hall state in bilayer graphene
    Li Qing-Xin
    Huang Yan
    Chen Yi-Wei
    Zhu Yu-Jian
    Zhu Wang
    Song Jun-Wei
    An Dong-Dong
    Gan Qi-Kang
    Wang Kai-Yuan
    Wang Hao-Lin
    Mai Zhi-Hong
    Andy Shen
    Xi Chuan-Ying
    Zhang Jing-Lei
    Yu Ge-Liang
    Wang Lei
    ACTA PHYSICA SINICA, 2022, 71 (18)