Publication List

  1. F.F. Assaad and Ph. de Forcrand
    Proceedings of Quantum Simulations of Condensed Matter, Los Alamos (1989).
    Antithetic Langevin Variables: a way to solve the Fermionic Sign Problem?


  2. F.F Assaad
    HPA 63, 580, (1990).
    Quantum Monte Carlo Simulations of the two-dimensional single band Hubbard Model. 


  3. F.F. Assaad and D. Würtz
    Z. Phys. B 80 325, (1990)
    Reinvestigation of the Sign Problem in the two-dimensional Hubbard model.


  4. F.F. Assaad and D. Würtz
    Helvetica Physica Acta 63 841, (1990).
    Numerical Simulations of the one-dimensional t-J model. 


  5. M. Ogata, M.U. Luchini, S. Sorella and F.F. Assaad
    Phys. Rev. Lett. 66, 2388, (1991).
    Phase Diagram of the one-dimensional t-J model. 


  6. F.F. Assaad and D. Würtz
    Phys. Rev. B 44 , 2681, (1991).
    Charge and Spin Structures in the one-dimensional t-J model. 


  7. M. Troyer, F.F. Assaad and D. Würtz
    Proceedings of the Gordon Godfrey Workshop on Condensed Matter Physics: Strongly Correlated Electron Systems Sydney, 1991, Nova Publications, New York.
    Srtongly Correlated Fermions in the t-J and t-J-J' models 


  8. M. Troyer, F.F. Assaad and D. Würtz
    Helvetica Physica Acta 64 , 942, (1991).
    Disconnected Cluster approach for Quantum Monte Carlo Simulations. 


  9. F.F. Assaad
    Phys. Rev. B 47 , 7910, (1993)
    Spiral States in the Three-Band Hubbard Model: a Hartree-Fock and Variational Quantum Monte Carlo Approach. 


  10. F.F. Assaad, W. Hanke and D.J. Scalapino
    Phys. Rev. Lett. 71 , 1915 (1993).
    Flux Quantization in the two-Dimensional Repulsive and Attractive Hubbard models. 


  11. F.F. Assaad, W. Hanke and D.J. Scalapino
    Phys. Rev. B 49, 4327 (1994).
    Temperature Derivative of the Superfluid Density in the Attractive Hubbard Model. 


  12. R. Preuss, A. Muramatsu, W. von der Linden, P. Dieterich, F.F. Assaad and W. Hanke
    Phys. Rev. Lett. 73 , 732, (1994)
    Spectral properties of the one-dimensional Hubbard model 


  13. F.F. Assaad, R. Preuss, A. Muramatsu and W. Hanke.
    Jour. of Low Temp. Physics. 95 , 251 (1994).
    Quantum Monte Carlo Simulations of Hubbard Type Models. 


  14. R. Preuss, F.F. Assaad, A. Muramatsu and W. Hanke
    Superconductivity and strongly correlated electron systems ed. by C. Noce, A. Romano, and G. Scarpetta. Singapore ; River Edge, N.J. World Scientific, (1994).
    Hubbard models, a Quantum Monte Carlo study . 


  15. R. Preuss, F.F. Assaad, A. Muramatsu and W. Hanke.
    The Hubbard Model: its Physics and Mathematical Physics ed. D. Baeriswyl. New York : Plenum Press, (1995). NATO ASI series. Series B, Physics
    Quantum-Monte-Carlo studies of one- and two-dimensional Hubbard models


  16. A. Muramatsu, R. Preuss, W. von der Linden, P. Dieterich, F.F. Assaad and W. Hanke
    Computer Simulations in Condensed Matter Physics VII, Eds. D.P. Landau, K.K. Mon, H.B. Schüttler, Springer Verlag, Heidelberg, Berlin, 1994.
    Excitation spectra in the 1-D Hubbard model from Quantum Monte Carlo Simulations.


  17. F.F. Assaad, W. Hanke and D.J. Scalapino
    Phys. Rev. B 50 , 12835, (1994)
    Flux Quantization and Temperature Derivative of the Superfluid Density as Criteria for Superconductivity in Two-Dimensional Hubbard models.


  18. F.F. Assaad and S. Biskamp
    Phys. Rev. B 51 , 1605, (1995).
    Fractional Quantum Hall Effect on a Lattice. 


  19. F.F. Assaad and M. Imada
    Phys. Rev. Lett. 74 , 3868, (1995).
    Hall Coefficient for the Two-Dimensional Hubbard Model.


  20. F.F. Assaad and M. Imada
    J. Phys. Soc. Jpn. 65 ,189, (1996).
    Stable Quantum Monte Carlo Algorithm for T=0 Calculation of Imaginary Time Green Functions 


  21. F.F. Assaad and M. Imada
    Phys. Rev. Lett. 76 , 3176, (1996).
    Insulator-Metal Transition in the One and Two-Dimensional Hubbard Models


  22. F.F. Assaad and M. Imada
    Proceedings of Frontiers of High T_c Superconductivity, Morioka, Japan, (1995). Physica C 263 , 78, (1996)
    High Frequency Hall Coefficient for the Two-dimensional Hubbard Model 


  23. N. Furukawa, F.F. Assaad, and M. Imada
    J. Phys. Soc. Jpn 65 , 2339, (1996)
    Critical Exponents of the Metal-Insulator Transition in the Two-Dimensional Hubbard Model. 


  24. F.F. Assaad, M. Imada and D.J. Scalapino
    Phys. Rev. Lett. 77 , 4592, (1996)
    Quantum Transition between an Antiferromagnetic Mott Insulator and dx2 - y2 Superconductor in Two Dimensions. 


  25. H. Endres, W. Hanke, H.G. Evertz and F.F. Assaad
    Phys. Rev. Lett. 78, 160, (1997)
    Comment on Quantum Monte Carlo Evidence for Superconductivity in the Three-Band Hubbard Model in Two Dimensions . 


  26. F.F. Assaad, M. Imada and D.J. Scalapino
    Phys. Rev. B 56 , 15001, (1997)
    Charge and Spin Structures of a dx2 - y2 Superconductor in the Proximity of an Antiferromagnetic Mott Insulator.


  27. F.F. Assaad and M. Imada
    Phys. Rev. B 58 , 1845, (1998).
    Doping induced metal-insulator transition in two-dimensional Hubbard, t-U, and extended Hubbard, t-U-W, models. 


  28. F.F. Assaad
    High performance computing in science and engineering 1998.
    Eds. E. Krause and W. Jäger, Springer-Verlag, Berlin, Heidelberg, New-York 1998.
    [cond-mat/9806306]
    The interplay between d-wave superconductivity and antiferromagnetic fluctuations: a quantum Monte Carlo study 


  29. F.F. Assaad
    High performance computing in science and engineering 1998.
    Eds. E. Krause and W. Jäger, Springer-Verlag, Berlin, Heidelberg, New-York 1998.
    [cond-mat/9806307]
    SU(2)-spin Invariant Auxiliary Field Quantum Monte Carlo Algorithm for Hubbard models 


  30. M. Imada, F. F. Assaad, H. Tsunetsugu, and Y. Motome
    Physics and Chemistry of Transition Metal Oxides, ed. by H. Fukuyama and N.  Nagaosa (Springer Verlag, Berlin, 1999) p.120.
    Metal-Insulator and Superconductor-Insulator Transitions in Correlated Electron Systems 


  31. F.F. Assaad and M. Imada
    Eur. Phys. J. B 10, 595 (1999)
    Unusually flat hole dispersion relation in the two-dimensional Hubbard model and restoration of coherence by addition of pair-hopping processes.


  32. M. Brunner, F.F. Assaad and A. Muramatsu
    Eur. Phys. J. B 16, 209 (2000).
    Single hole dynamics in the one dimensional t-J model


  33. F.F. Assaad
    Phys. Rev. Lett. 83, 796 (1999).
    Quantum Monte Carlo simulations of the half-filled two-dimensional Kondo lattice model. 


  34. M. Brunner, F. F. Assaad and A. Muramatsu
    Phys. Rev. B 62, 15480 (2000)
    Single hole dynamics in the t-J model on a square lattice.


  35. T. Eckl, E. Arrigoni, W. Hanke and F. F. Assaad
    Phys. Rev. B 62, 12395 (2000)
    t-U-W Model of a dx2 - y2 Superconductor in the Proximity of an AF Mott Ins ulator: Diagrammatic Studies vs. QMC Simulations


  36. P. Haas, E. Griesshaber, B. Gorshunov, D. Schweitzer, M. Dressel, F.F. Assaad
    Phys. Rev. B. Rapid Commun. 62, R14673 (2000)
    Correlation gap in the optical spectra of the two-dimensional organic metal (BEDT-TTF)4[Ni(dto)2]


  37. C. Lavalle, M. Brunner, F.F. Assaad and A. Muramatsu
    High performance computing in science and engineering 2000.
    Eds. E. Krause und W. Jäger, Springer-Verlag, Berlin, Heidelberg, New-York 2000. ISBN 3-540-41213-1
    Dynamical properties of the t-J model.


  38. M. Feldbacher and F.F. Assaad
    Phys. Rev. B. 63, 073105 (2001)
    [cond-mat/0009447]
    Efficient calculation of imaginary time displaced correlation functions in the projector auxiliary field quantum Monte-Carlo algorithm


  39. S. Capponi and F.F. Assaad
    Phys. Rev. B 63, 155114, (2001)
    [cond-mat/0010393]
    Spin and charge dynamics of the ferromagnetic and antiferromagnetic two-dimensional half-filled Kondo lattice model.


  40. M. Brunner, S. Capponi, F.F. Assaad and A. Muramatsu
    Phys. Rev. B 63, R180511 (2001)
    Single hole dynamics in the t-J model on two- and three-leg ladders


  41. M. Brunner, C. Lavalle, S. Capponi, M. Feldbacher, F. F. Assaad and A. Muramatsu.
    High performance computing in science and engineering 2001.
    Eds. E. Krause und W. Jäger, Springer-Verlag, Berlin, Heidelberg, New-York 2000. ISBN 3-540-42675-2
    Single hole dynamics in correlated insulators.


  42. F. F. Assaad
    Phys. Rev. B 65 115104 (2002)
    [cond-mat/0104126]
    Depleted Kondo Lattices: mean-field and Quantum Monte Carlo calculations.


  43. M. Feldbacher, C. Jurecka, F. F. Assaad and W. Brenig
    Phys. Rev. B 66, 045103 (2002)
    [cond-mat/0104126]
    Single-hole dynamics in the half-filled two-dimensional Kondo-Hubbard model.


  44. F. F. Assaad
    Lecture notes of the Winter School on Quantum Simulations of Complex Many-Body Systems: From Theory to Algorithms.
    Edited by : J. Grotendorst, D. Marx und A. Muramatsu. Publication Series of the John von Neumann Institute for Computing (NIC). NIC series Vol. 10. ISBN 3-00-009057-6 Pages 99-155.
    Quantum Monte Carlo Methods on Lattices: The Determinantal method.


  45. F.F. Assaad, V. Rousseau, F. Hebert, M. Feldbacher and G. G. Batrouni
    Europhys. Lett., 63 (4) , pp. 569-575 (2003)
    Spin and charge dynamics of stripes in doped Mott insulators.


  46. C. Lavalle, M. Arikawa, S. Capponi, F. F. Assaad and A. Muramatsu
    Phys. Rev. Lett. 90, 216401 (2003)
    Antiholons in one-dimensional t-J models.


  47. C. Lavalle, M. Rigol, M. Feldbacher, F. F. Assaad and A. Muramatsu
    High performance computing in science and engineering 2002.
    Eds. E. Krause und W. Jäger, Springer-Verlag, Berlin, Heidelberg, New-York 2000. ISBN 3-540-43860-2
    Thermodynamics and Dynamics of Correlated Electron Systems.


  48. M. Feldbacher, F.F. Assaad, F. Hebert and G. G. Batrouni
    Phys. Rev. Lett. 91, 056401 (2003)
    Coexistence of s-wave Superconductivity and Antiferromagnetism.


  49. I.Milat, F.F. Assaad and M. Sigrist
    Eur. Phys. J. B 38 (2004) p. 571
    Field induced magnetic ordering transition in Kondo insulators


  50. F.F. Assaad
    Phys. Rev. B 70, 020402 (2004) (Rapid Communication)
    Coherence scale of the two-dimensional Kondo Lattice model.


  51. M. Feldbacher, K. Held and F.F. Assaad
    Phys. Rev. Lett. 93, 136405 (2004)
    Projective Quantum Monte Carlo Method for the Anderson Impurity Model and its Application to Dynamical Mean Field Theory


  52. F.F. Assaad
    Phys. Rev. B 71, 075103 (2005)
    Phase diagram of the half-filled two-dimensional SU(N) Hubbard-Heisenberg model: a quantum Monte Carlo study.


  53. G.G. Batrouni, F. F. Assaad, R.T. Scalettar and P.J.H. Denteneer
    Phys. Rev. A 72, 031601 (2005)
    Dynamic response of trapped ultracold bosons on optical lattices.


  54. F. F. Assaad, P. Werner, P. Corboz, E. Gull and M. Troyer
    Phys. Rev. B 72, 224518 (2005)
    Symmetry projection schemes for Gaussian Monte Carlo methods.


  55. A. Abendschein and F. F. Assaad
    Phys. Rev. B 73, 165119 (2006)
    Temperature dependence of spectral functions for the one-dimensional Hubbard model: comparison with experiments.


  56. C. Brünger and F. F. Assaad
    Phys. Rev. B 74, 205107, (2006)
    Single hole dynamics in the Kondo Necklace and Bilayer Heisenberg models on a square lattice


  57. S. Capponi and F. F. Assaad

    Phys. Rev. B 75, 045115, (2007)
    Spin nematic phases in models of correlated electron systems: a numerical study


  58. F. F. Assaad and H.G. Evertz

    Heraeus Summer School, Greifswald 18-29 Sept. 2006. Lecture Notes.
    World line and determinantal Quantum Monte Carlo methods for spins, phonons, and electrons.


  59. F. F. Assaad and T. Lang
    Phys. Rev. B 76, 035116 (2007)
    Diagrammatic Determinantal methods: projective schemes and applications to the Hubbard-Holstein model


  60. C. Brünger, F. F. Assaad, S. Capponi, F. Alet, D. N. Aristov and M. N. Kiselev
    Phys. Rev. Lett. 100, 017202 (2008)
    Spin gap and string order parameter in the ferromagnetic Spiral Staircase Heisenberg Ladder: a quantum Monte Carlo study.


  61. P. Corboz, A. Kleine, F. F. Assaad, I. P. McCulloch, U. Schollwöck and M. Troyer
    Phys. Rev. B 77, 085108 (2008)
    Recent results from the Gaussian Quantum Monte Carlo method for fermions with symmetry projection


  62. A. Laeuchli, S. Capponi and F.F. Assaad
    J. Stat. Mech. (2008) P01010
    Dynamical dimer correlations at bipartite and non-bipartite Rokhsar-Kivelson points


  63. L.C. Martin and F.F. Assaad
    Phys. Rev. Lett. 101, 066404 (2008)
    Evolution of the Fermi Surface across a Magnetic Order-Disorder Transition in the Two-Dimensional Kondo Lattice Model: A Dynamical Cluster Approach


  64. S. Hochkeppel, F.F. Assaad and W. Hanke
    Phys. Rev. B 77, 205103 (2008)
    A Dynamical Quantum Cluster Approach to Two-Particle Correlation Functions in the Hubbard Model.


  65. K. S. D. Beach and F.F. Assaad
    Phys. Rev. B 77, 205123 (2008)
    Coherence and metamagnetism in the two-dimensional Kondo lattice model.


  66. F.F. Assaad
    Phys. Rev. B 78, 155124 (2008)
    Spin, charge and single-particle spectral functions of the one-dimensional quarter filled Holstein model.


  67. M. Bercx, T. C. Lang and F. F. Assaad
    Phys. Rev. B 80, 045412 (2009)
    Magnetic field induced semimetal-to-canted-antiferromagnet transition on the honeycomb lattice


  68. K.S.D. Beach and F. F. Assaad
    ArXiv:0905.1127
    Bilayer Hubbard model for 3He: a cluster dynamical mean-field calculation


  69. David J. Luitz, Fakher F. Assaad
    Phys. Rev. B 81, 024509 (2010)
    A weak coupling CTQMC study of the single impurity and periodic Anderson models with s-wave superconducting baths


  70. M. Raczkowski, P. Zhang, F. F. Assaad, T. Pruschke, M. Jarrell
    Phys. Rev. B 81, 054444 (2010)
    Phonons and the coherence scale of models of heavy fermions


  71. Hélène Feldner, Andreas Honecker, Daniel Cabra, Stefan Wessel, Zi Yang Meng, Fakher F. Assaad
    Phys. Rev. B 81, 115416 (2010)
    Edge Magnetism in Graphene: Mean-Field Theory compared with Exact Diagonalization and Quantum Monte Carlo Simulation


  72. Dimitrios Galanakis, Shuxiang Yang, Fakher Assaad, Mark Jarrell, Philip Werner, Matthias Troyer
    Phys. Rev. Lett. 105, (159701) 2010
    Comment on ``Exact bosonization for an interacting Fermi gas in arbitrary dimensions''


  73. Z. Y. Meng, T. C. Lang, S. Wessel, F. F. Assaad and A. Muramatsu
    Nature 464, 847-851 (8 April 2010) doi:10.1038/nature08942 Article
    Quantum spin-liquid emerging in two-dimensional correlated Dirac fermions


  74. L.C.Martin, M.Bercx and F.F.Assaad
    Phys. Rev. B 82, 245105 (2010)
    Fermi surface topology of the two-dimensional Kondo lattice model: a dynamical cluster approximation approach


  75. M. Raczkowski and F.F.Assaad
    Phys. Rev. B 82, 233101 (2010)
    Melting of stripe phases and its signature in the single-particle spectral function


  76. D. N. Aristov, C. Brünger, F. F. Assaad, M. N. Kiselev, A. Weichselbaum, S. Capponi, F. Alet
    Phys. Rev. B 82, 174410 (2010)
    Asymmetric spin-1/2 two-leg ladders


  77. K. S. D. Beach and F. F. Assaad
    Phys. Rev. B 83, 045103 (2011)
    Orbital-selective Mott transition and heavy fermion behavior in a bilayer Hubbard model for 3He


  78. M. Hohenadler, T. C. Lang and F. F. Assaad
    Phys. Rev. Lett. 106, 100403 (2011)
    Correlation Effects in Quantum Spin Hall Insulators: a Quantum Monte Carlo Study


  79. H. Feldner, Z. Y. Meng, T. C. Lang, F. F. Assaad, S. Wessel and A. Honecker
    Phys. Rev. Lett. 106, 226401 (2011)
    Dynamical Signatures of Edge-State Magnetism on Graphene Nanoribbons


  80. M.Hohenadler, H. Fehske, F. F. Assaad
    Phys. Rev. B 83, 115105 (2011)
    Dynamic charge correlations near the Peierls transition


  81. David J. Luitz, Fakher F. Assaad, Manuel J. Schmidt
    Phys. Rev. B 83, 195432 (2011)
    Exact diagonalization study of the tunable edge magnetism in graphene


  82. M. Klein, A. Nuber, H. Schwab, N. Tobita, M. Higashiguchi, J. Jiang, S. Fukuda, K. Tanaka, K. Shimada, M. Mulazzi, F. F. Assaad, F. Reinert
    Phys. Rev. Lett. 106, 186407 (2011)
    Coherent heavy quasiparticles in CePt5 surface alloy


  83. F. Goth and F. F. Assaad
    Phys. Rev. B. Submitted.
    A time and spatially resolved quench of the fermionic Hubbard model showing restricted equilibration


  84. M. Hohenadler and F. F. Assaad
    Phys. Rev. Lett. Submitted.
    Luttinger Liquid Physics and Spin-Flip Scattering on Helical Edges


  85. M. Hohenadler, Z. Y. Meng, T. C. Lang, S. Wessel, A. Muramatsu and F. F. Assaad
    Phys. Rev. B Submitted.
    Quantum phase transitions in the Kane-Mele-Hubbard model


  86. M. Hohenadler, Stefan Wessel, Maria Daghofer and Fakher F. Assaad
    Phys. Rev. B Submitted.
    Interaction-range effects for fermions in one dimension



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