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    Modular symmetry and temperature flow of conductivities in quantum Hall systems with varying Zeeman energy


    Dolan, Brian P. (2010) Modular symmetry and temperature flow of conductivities in quantum Hall systems with varying Zeeman energy. Physical Review B, 82 (19). pp. 1-8. ISSN 1098-0121

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    Abstract

    The behavior of the critical point between quantum Hall plateaux, as the Zeeman energy is varied, is analyzed using modular symmetry of the Hall conductivities following from the law of corresponding states. Flow diagrams for the conductivities as a function of temperature, with the magnetic field fixed, are constructed for different Zeeman energies, for samples with particle-hole symmetry.

    Item Type: Article
    Additional Information: B.P.D. acknowledges the warm hospitality of Pei-Ming Ho and Chi-Te Liang during his visit funded by the National Science Council, Taiwan, ROC Grant No. NSC 098-2912- I-002-097. It is a pleasure to thank Pei-Ming Ho and Chi-Te Liang for discussions.
    Keywords: Modular symmetry; temperature flow; conductivities; quantum Hall systems; varying Zeeman energy;
    Academic Unit: Faculty of Science and Engineering > Mathematical Physics
    Item ID: 2459
    Identification Number: https://doi.org/10.1103/PhysRevB.82.195319
    Depositing User: Dr. Brian Dolan
    Date Deposited: 02 Mar 2011 17:29
    Journal or Publication Title: Physical Review B
    Publisher: American Physical Society
    Refereed: Yes
    URI:
    Use Licence: This item is available under a Creative Commons Attribution Non Commercial Share Alike Licence (CC BY-NC-SA). Details of this licence are available here

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