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Curriculum Vitae, M. Haque



     
Masudul Haque
Max-Planck Institute for Physics of
Complex Systems (MPI-PKS)
Nöthnitzer Strasse 38
01187 Dresden, Germany.
  haque@pks.mpg.de
Tel. office +49-351-871-1113
Tel. mobile +31-6-1116-0834
http://www.pks.mpg.de/$ \sim$haque/


Employment & Education




Research Interests




Organization activities

Workshop in summer 2010

Title: Quantum information concepts for condensed matter problems. (QICCMP)
Co-organizers: Ian Affleck (UBC, Canada); Ulrich Schollwöck (LMU, Munich).
Details: 100$ ^+$ participants. Two-week programme (June 14-25, 2010).
Location: Max Planck Institute (MPI-PKS), Dresden, Germany.
Website: http://www.pks.mpg.de/$ \sim$qiccmp10/

Other initiatives & responsibilities




Teaching and Supervision




Grants & Fellowships




Early Independence in Research




Talks and Seminars

Invited presentations in Conferences & Workshops


Seminars at various institutes and departments (month/year in parenthesis):

Oxford (03/10); Munich LMU (02/10); Barcelona [Casteldefels] ICFO (01/10);
Paris Jussieu [LPTMC] (12/09); Grenoble ILL (11/09);
Dresden MPI-PKS (09/09, 11/06); Bristol (11/08, 09/07); ENS Paris (02/08);
M.I.T. (09/07); Florida Tallahassee (09/07); Rutgers (09/07, 12/05);
Düsseldorf (03/07); Groningen (01/07); Utrecht (11/06); Amsterdam (11/06);
Cambridge [Cavendish] (01/06); Rutherford Lab [ISIS] (11/05); Karlsruhe (07/05); Frankfurt (07/05); ETH Zurich (12/04); etc.




Biographical Data




Publication List

Overview:

Published:

  1. Self-similar spectral structures and edge-locking hierarchy in open-boundary spin chains.
    M. Haque, Phys. Rev. A, 82, 012108 (2010).

  2. Disentangling Entanglement Spectra of Fractional Quantum Hall States on Torus Geometries.
    A. M. Laeuchli, E. J. Bergholtz, J. Suorsa, and M. Haque; Phys. Rev. Lett. 104, 156404 (2010).

  3. Entanglement Scaling of Fractional Quantum Hall states through Geometric Deformations.
    A. M. Laeuchli, E. J. Bergholtz, and M. Haque; New Journal of Physics 12, 075004 (2010).

  4. Interaction induced fractional Bloch and tunneling oscillations .
    R. Khomeriki, D. O. Krimer, M. Haque, and S. Flach; Phys. Rev. A 81, 065601 (2010).

  5. Finite-rate quenches of site bias in the Bose-Hubbard dimer.
    T. Venumadhav, M. Haque, and R. Moessner; Phys. Rev. B 81, 054305 (2010).

  6. Entanglement between particle partitions in itinerant many-particle states.
    M. Haque, O. S. Zozulya, and K. Schoutens; arXiv:0905.4024. J. Phys. A: Math. Theor. 42, 504012 (2009).

  7. Entanglement signatures of Quantum Hall phase transitions.
    O. Zozulya, M. Haque, and N. Regnault; Phys. Rev. B 79, 045409 (2009).

  8. Edge-localized states in quantum one-dimensional lattices.
    R. A. Pinto, M. Haque, and S. Flach; Phys. Rev. A 79, 052118 (2009).

  9. Entanglement and level crossings in finite frustrated ferromagnetic chains.
    M. Haque, J. N. Bandyopadhyay, and V. Ravi Chandra; Phys. Rev. A 79, 042317 (2009).

  10. Probing topological order in quantum Hall states using entanglement calculations.
    M. Haque; AMS Contemp. Math. 482, 213 (2009).

  11. Particle partitioning entanglement in itinerant many-particle systems.
    O. Zozulya, M. Haque, and K. Schoutens; Phys. Rev. A 78, 042326 (2008).

  12. A vortex dipole in a trapped two-dimensional Bose condensate.
    W. Li, M. Haque and S. Komineas; Phys. Rev. A 77, 053610 (2008).

  13. Symmetry-breaking Fermi surface deformations from central interactions in two dimensions.
    J. Quintanilla, M. Haque, and A. J. Schofield; Phys. Rev. B, 78, 035131 (2008).

  14. Pomeranchuk instability: symmetry breaking and experimental signatures.
    J. Quintanilla, C. Hooley, B. J. Powell, A. J. Schofield, and M. Haque; Physica B: Condensed Matter, 403, 1279 (2008).

  15. Bipartite entanglement entropy in fractional quantum Hall states.
    O. Zozulya, M. Haque, K. Schoutens, and E. H. Rezayi; Phys. Rev. B 76, 125310 (2007).
    $ 15^+$ citations.

  16. Entanglement entropy of fermionic Laughlin states.
    M. Haque, O. Zozulya, and K. Schoutens; Phys. Rev. Lett. 98, 060401 (2007).
    $ 30^+$ citations.

  17. Trapped fermionic clouds distorted from the trap shape due to many-body effects.
    M. Haque & H. T. C. Stoof; Phys. Rev. Lett., 98, 260406 (2007).
    $ 10^+$ citations.

  18. Deformation of a Trapped Fermi Gas with Unequal Spin Populations.
    G. B. Partridge, Wenhui Li, Y. A. Liao, R. G. Hulet, M. Haque, and H. T. C. Stoof; Phys. Rev. Lett. 97, 190407 (2006).
    $ 100^+$ citations.

  19. Pairing of a trapped resonantly interacting fermion mixture with unequal spin populations.
    M. Haque & H. T. C. Stoof; Phys. Rev. A 74, 011602 (2006).
    $ 60^+$ citations.

  20. Ring-shaped luminescence pattern in biased quantum wells studied as a steady state reaction front.
    M. Haque; Phys. Rev. E 73, 066207 (2006).

  21. Squeezing in the weakly interacting uniform Bose-Einstein condensate.
    M. Haque & A. E. Ruckenstein; Phys. Rev. A, 74, 043622 (2006).

  22. Ultracold superstring in atomic boson-fermion mixtures.
    M. Snoek, M. Haque, S. Vandoren, and H. T. C. Stoof; Phys. Rev. Lett. 95, 250401 (2005).
    $ 10^+$ citations.

  23. Dynamics of a molecular Bose-Einstein condensate near a Feshbach resonance.
    M. Haque & H. T. C. Stoof; Phys. Rev. A 71, 063603 (2005).

  24. Structural Transition of Wigner Crystal on Liquid Substrate.
    M. Haque, I. Paul and S. Pankov; Phys. Rev. B 68, 045427 (2003).

  25. Survival benefits in mimicry: a quantitative framework.
    A. Mikaberidze & M. Haque; J. Theor. Biol. 259, 462 (2009).

  26. Anomaly in the normalization constant of the ($ ^3$He,p) reaction.
    M. Haque et. al., Nuovo Cimento A, 111A, 1131 (1998).

  27. $ ^{64}$Cu levels from the $ ^{62}$Ni($ ^{3}$He,p) reaction at 18 MeV.
    A. K. Basak et. al., Phys. Rev. C 56, 1983 (1997).


Publicly available preprints (submitted or unpublished)

  1. Three-vortex configurations in trapped Bose-Einstein condensates.
    J. A. Seman, E. A. L. Henn, M. Haque, R. F. Shiozaki, E. R. F. Ramos, M. Caracanhas, C. Castelo Branco, G. Roati, K. Magalhaes, V. S. Bagnato, arXiv:0907.1584.

  2. Transition Temperature of Dilute Weakly Repulsive Bose Gas.
    M. Haque & A. E. Ruckenstein, cond-mat/0212590.

  3. Weakly Non-ideal Bose Gas: Comments on Critical Temperature Calculations.
    M. Haque, cond-mat/0302076.




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masudul haque 2010-08-01