List of publications of Kuba Zakrzewski

The list contains papers published in refereed journals

You can obtain the PDF file of some of the papers listed below by clicking in the first column. You may also obtain reprints by sending an email request to kuba@if.uj.edu.pl.

The list is partitioned in years. You can jump directly to a particular year by clicking that year in the list directly below

[1983] [1984] [1985] [1986] [1987] [1988] [1989] [1990] [1991] [1992] [1993] [1994] [1995] [1996] [1997] [1998] [1999] [2000] [2001] [2002] [2003] [2004] [2005] [2006] [2007] [2008] [2009] [2010] [2011] [2012] [2013] [Submitted papers]

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1983

1983.1
1. J. Zakrzewski and T. Dohnalik,
AC Stark splitting with a finite bandwidth laser of moderate intensity,
Acta Phys. Polon. A63, 391 (1983).

1983.2
2. J. Zakrzewski and T. Dohnalik,
Forward scattering (polarisation spectroscopy) of resonance radiation in partially coherent fields,
J. Phys. B16, 2119 (1983).

1984

1984.1
3. J. Zakrzewski,
Laser induced autoionisation in the presence of additional atomic continua,
J. Phys. B 17, 719 (1984).

1984.2
4. J. Zakrzewski, K. Rzazewski and M. Lewenstein,
Strong field photodetachment monitored by spontaneous photo-relaxation,
J. Phys. B 17, 729 (1984).

1984.3
5. T. Dohnalik, J. Koperski, M. Stankiewicz, J. Zakrzewski and K. Zyczkowski,
Quantum beats in the forward scattering of resonance radiation,
Acta Phys. Polon. A66, 497 (1984).

1985

1985.1
6. J. Zakrzewski,
Electron spin polarisation in laser induced autoionisation,
Opt. Commun. 53, 99 (1985).

1985.2
7. M. Florjanczyk, K. Rzazewski and J. Zakrzewski,
Resonance scattering of a short laser pulse on a two-level system: Time-dependent approach
Phys. Rev. A31, 1558 (1985).

1985.3
8. K. Rzazewski, J. Zakrzewski, M. Lewenstein and J.W.Haus,
Strong field autoionization by smooth laser pulses
Phys. Rev. A31, 2995 (1985).

1985.4
9. J. Zakrzewski,
Analytic solutions of the two state problem for a class of chirped pulses
Phys. Rev. A32, 3748 (1985).

1985.5
10. J. Zakrzewski, M. Lewenstein and R. Kuklinski,
Soluble models of optical systems driven by exponential pulses
J. Phys. B18, 4631 (1985).

1986

1986.1
11. M. Lewenstein, J. Zakrzewski and K. Rzazewski,
Theory of fluorescence spectra induced by intense laser pulses
J. Opt. Soc. Am. B3, 22 (1986).

1986.2
12. J. Zakrzewski,
On the Geltman-Hartree model of multiple ionisation by intense laser pulses
J. Phys. B19, L315 (1986).

1986.3
12. J. Zakrzewski,
The influence of pulse shape and chirp on the multipeak spectra in near-resonant Raman scattering and in autoionisation
J. Phys. B19, 2247 (1986).

1986.4
14. J. Zakrzewski and K. Zyczkowski,
A model for strong field ionisation
Acta Phys. Polon. A70, 807 (1986).

1987

1987.1
15. J. Zakrzewski and K. Zyczkowski,
Simple model for strong - laser - field ionization
Phys. Rev. A36, 4311 (1987).

1988

1988.1
16. S. Geltman and J. Zakrzewski,
Multiple ionisation by intense laser pulses in the independent electron model: application to xenon
J. Phys. B21, 47 (1988).

1988.2
17. M. Lewenstein, J. Zakrzewski, Th. W. Mossberg and J. Mostowski,
Non-exponential spontaneous decay in cavities and waveguides
J. Phys. B21, L9 (1988).

1988.3
18. H. S. Taylor, J. Zakrzewski and S. Saini,
A model for motion in the chaotic regime: classical and quantum viewpoints
Chem. Phys. Lett. 145, 555 (1988).

1988.4
19. K. Zyczkowski and J. Zakrzewski,
Modulated Kicks Approximation in Nonintegrable Classical and Quantum Systems
J. Phys. A21, L371 (1988).

1988.5
20. M. Lewenstein, J. Zakrzewski, and Th. W. Mossberg,
Spontaneous emission of atoms coupled to frequency dependent reservoirs
Phys. Rev. A38, 808 (1988).

1988.6
21. H. S. Taylor and J. Zakrzewski,
The dynamic interpretation of the atomic and molecular spectra in the chaotic regime
Phys. Rev. A38, 3732 (1988).

1988.7
22. J. Zakrzewski, S. Saini and H. S. Taylor,
Semiclassical quantization via Adiabatic Switching: Choice of tori and initial conditions for two-dimensional systems
Phys. Rev. A38, 3877 (1988).

1988.8
23. S. Saini, J. Zakrzewski, and H. S. Taylor,
Semiclassical quantization via Adiabatic Switching: Choice of tori and initial conditions for multidimensional systems
Phys. Rev. A38, 3900 (1988).

1988.9
24. J.M. Gomez Llorente, J. Zakrzewski, H.S. Taylor and K.C. Kulander,
Spectra in the chaotic region: A quantum analysis of the photodissociation of H$_3^+$
J. Chem. Phys. 89, 5959 (1988).

1988.10
25. J. Zakrzewski, J.M.~Gomez Llorente and H.S. Taylor,
Stabilisation approach to quasi-Landau spectrum of the magnetized hydrogen atom
J. Phys. B21, L677 (1988).

1988.11
26. J.-P. Brunet, R.E. Wyatt, H.S. Taylor and J. Zakrzewski,
Time evolution in a driven quantum system: Excitation through bands of states
Phys. Rev. A38, 5602 (1988).

1989

1989.1

27. J.M. Gomez Llorente, J. Zakrzewski, H.S. Taylor and K.C. Kulander,
Spectra in the chaotic region: Methods for extracting dynamic information
J. Chem. Phys. 90, 1505 (1989).

1989.2
28. K. Zyczkowski and J. Zakrzewski,
Diffusive ionization in the Rosen-Morse potential
Acta. Phys. Polon. A75, 743 (1989).

1990

1990.1
29. J. Zakrzewski,
Wavefunction localization and characterization of spectra: regular and irregular systems
Acta. Phys. Polon. A77, 745 (1990).

1990.2
30. J. Zakrzewski and R. Marcinek,
On the adiabatic mechanism of wavefunction localization in the globally chaotic system
Phys. Rev. A42, 7172 (1990).

1991

1991.1
31. J.P. Lemoigne, J.P. Grandin, X. Husson, H. Kucal, J. Zakrzewski, T. Dohnalik and R. Marcinek,
Autoionization in a strong magnetic field
Europhys. Lett. 14, 741 (1991).

1991.2
32. M. Kus, J. Zakrzewski and K. Zyczkowski,
Quantum Scars on a Sphere
Phys. Rev. A43, 4244 (1991).

1991.3
33. J. Zakrzewski and T. Dohnalik,
Level crossing in frequency dependent photon reservoir
J. Mod. Opt. 38, 1309 (1991).

1991.4
34. J. Zakrzewski, M. Lewenstein and T.W. Mossberg,
Theory of Dressed State Lasers I. Effective Hamiltonians and Stability Properties
Phys. Rev. A44, 7717 (1991).

1991.5
35. J. Zakrzewski, M. Lewenstein and T.W. Mossberg,
Theory of Dressed State Lasers II. Phase diffusion and squeezing
Phys. Rev. A44, 7732 (1991).

1991.6
36. J. Zakrzewski, M. Lewenstein and T.W. Mossberg,
Theory of Dressed State Lasers III. Pump Depletion Effects
Phys. Rev. A44, 7746 (1991).

1991.7
37. J. Zakrzewski and M. Kus,
Distribution of avoided crossings for quantum chaotic systems
Phys. Rev. Lett. 67, 2749 (1991).

1992

1992.1
38. A. Karawajczyk, J. Zakrzewski and W. Gawlik,
Dressed atom model of ``laser without inversion'' in the double lambda configuration
Phys. Rev. A45, 420 (1992).

1992.2
39. J. Zakrzewski and M. Lewenstein,
Theory of Dressed State Lasers in the Bad Cavity Limit
Phys. Rev. A45, 2057 (1992).

1992.3
40. D. Grobgeld, E. Pollak and J. Zakrzewski,
A Numerical Method for Locating Stable Periodic Orbits in Chaotic Systems
Physica D 56, 368 (1992).

1992.4
41. J. Zakrzewski, D. Segal, and M. Lewenstein,
Pulsed Dressed State Lasers
Phys. Rev. A46, 2877 (1992).

1992.5
42. J. Zakrzewski,
Theoretical explanation of the first experimentally observed laser without inversion in a two-level scheme
Phys. Rev. A46, 6010 (1992).

1993

1993.1
43. J. Zakrzewski, D. Delande, J.C. Gay and K. Rzazewski,
Ionization of highly excited Hydrogen atoms by circularly polarized microwave field
Phys. Rev. A 47, R2468 (1993).

1993.2
44. J. Zakrzewski, D. Delande,
Parametric motion of energy levels in quantum chaotic systems: I. Curvature Distributions
Phys. Rev. E 47, 1650 (1993).

1993.3
45. J. Zakrzewski, D. Delande and M. Kus,
Parametric motion of energy levels in quantum chaotic systems: II. Avoided Crossing Distributions
Phys. Rev. E 47, 1665 (1993).

1994

1994.1
46. A. Karawajczyk and J. Zakrzewski,
Semiclassical theory of lasing without inversion in the double-lambda system
Opt. Comm. 107 , 145 (1994).

1994.2
47. R. Marcinek, E. Pollak, and J. Zakrzewski,
Yang-Mills classical mechanics revisited
Phys. Lett. B327 , 67 (1994).

1994.3
48. R. Gebarowski and J. Zakrzewski,
Ionization of H Rydberg atoms by microwaves: Pulse shape influence on the algebraic decay
Phys. Rev. A 50, 4408 (1994).

1995

1995.1
49. A. Karawajczyk and J. Zakrzewski,
Lasers without inversion in a Doppler-broadened medium
Phys. Rev. A 51, 830 (1995).

1995.2
50. J. Zakrzewski, K. Dupret and D. Delande,
Statistical properties of energy levels of chaotic systems : Wigner or non-Wigner
Phys. Rev. Lett. 74, 522 (1995).

1995.3
51. R. Gebarowski and J. Zakrzewski,
Ionization of hydrogen atoms by circularly polarized microwaves
Phys. Rev. A 51, 1508 (1995).

1995.4
52. J. Zakrzewski,
On "Universal" Velocity Correlations in Disordered and Chaotic Systems
Z. Phys. B98, 273 (1995).

1995.5
53. I. Guarneri, K. Zyczkowski, J. Zakrzewski, L. Molinari and G. Casati,
Parametric Spectral Correlations of Disordered Systems in the Fourier Domain
Phys. Rev. E52, 2220 (1995).

1995.6
54. K. Dupret, J. Zakrzewski and D. Delande,
Resonances in the diamagnetic Rydberg spectrum: order and chaos
Europhysics Letters 31, 251 (1995).

1995.7
55. M. Wojcik, J. Zakrzewski, and K. Rzazewski,
Classical aspects of quantum localization in microwave ionization of H atoms
Phys. Rev. A52, R2523 (1995).

1995.8
56. Delande, J. Zakrzewski and A. Buchleitner,
A wavepacket can be a stationary state
Europhysics Letters 32, 107 (1995).

1995.9
57. J. Zakrzewski and D. Delande,
Stabilization in circularly polarized light: Floquet-adiabatic versus exact treatment
J. Phys. B 28, L667 (1995).

1995.10
58. A. Buchleitner, D. Delande, J. Zakrzewski, R. Mantegna, M. Arndt and H. Walther,
Multiple time scales in the microwave ionization of Rydberg atoms
Phys. Rev. Lett. 75, 3818 (1995).

1995.11
59. J. Zakrzewski, D. Delande and A. Buchleitner
Nonspreading Electronic Wavepackets and Conductance Fluctuations
Phys. Rev. Lett. 75, 4015 (1995):

1996

1996.1
60. J. Zakrzewski, R. Gebarowski and D. Delande,
Two-dimensional Quantum Hydrogen Atom in Circularly Polarized Microwaves: Global Properties
Phys. Rev. A 54, 691 (1996).

1996.2
61. P. Seba, K. Zyczkowski, and J. Zakrzewski,
Statistical properties of random scattering matrice
Phys. Rev. E 54, 2438 (1996).

1997

1997.1
62. K. Sacha and J. Zakrzewski,
Resonance overlap criterion for H atom ionization by circularly polarized microwave field
Phys. Rev. A 55, 568 (1997).

1997.2
63. J. Zakrzewski, A. Buchleitner and D. Delande,
Nondispersive wave packets as solitonic solutions of level dynamics
Zeit. f. Phys. B 103, 115 (1997).

1997.3
64. P. Kunstman, K. Zyczkowski, and J. Zakrzewski,
Nonuniversality in level dynamics
Phys. Rev. E 55, 2446 (1997).

1997.4
65. J. Zakrzewski and D. Delande
How to build experimentally a non-spreading wavepacket ?
J. Phys. B 30, L87 (1997).

1997.5
66. K. Sacha and J. Zakrzewski,
H-atom ionization by elliptically polarized microwave fields: The overlap criterion
Phys. Rev. A 56, 719 (1997).

1997.6
67. D. Delande, J. Zakrzewski and A. Buchleitner,
Comment on   New states of hydrogen in a circularly polarized electromagnetic field
Phys. Rev. Lett. 79, 3541 (1997).

1997.8 Conference
R. Gebarowski and J. Zakrzewski
Power-Law Decay in the Ionization of H Rydberg Atoms
Open Systems and Information Dynamics (Springer), 4, 323 (1997).

1998

1998.1
68. J. Zakrzewski, D. Delande and A. Buchleitner,
Ionization via chaos assisted tunneling
Phys. Rev. E 57, 1458, (1998).

1998.2
69. K. Sacha, J. Zakrzewski and D. Delande,
Controlling Nonspreading Wavepackets
EPJD 1, 231 (1998).

1998.3
70. D. Delande and J. Zakrzewski,
Spontaneous emission of non-dispersive Rydberg wave packets
Phys. Rev. A 58, 466 (1998).

1998.4
71. K. Sacha and J. Zakrzewski,
H-atom ionization by elliptically polarized microwave fields: Three dimensional analysis
Phys. Rev. A 58, 488 (1998).

1998.5
72. R. Gebarowski, P. Seba, K. Zyczkowski, and J. Zakrzewski,
Quantum scattering in the strip: from ballistic to localized regimes
EPJB 6, 399 (1998).

1998.5
73. A. Buchleitner, I. Guarneri, and J. Zakrzewski,
Conductance fluctuations in microwave driven Rydberg atoms
Europhys. Lett. 44, 162 (1998).

1998.6
74. K. Sacha and J. Zakrzewski,
H-atom in elliptically polarized microwaves: Semiclassical versus quantum resonant dynamics
Phys. Rev. A 58, 3974 (1998).

1999

1999.1
75. K. Sacha and J. Zakrzewski,
Resonant dynamics of the H atom in an elliptically polarized microwave field
Phys. Rev. A 59, 1707 (1999).

1999.2
76. A. Buchleitner, K. Sacha, D. Delande and J. Zakrzewski,
Quasi-classical dynamics of resonantly driven Rydberg states
EPJD 5, 145 (1999).

1999.3
77. P. Seba, K. Zyczkowski, and J. Zakrzewski,
On the nonuniversal conductance of an almost ideal quantum wire
Acta Phys. Polon. 30, 2797 (1999).

1999.4
78. K. Sacha, J. Zakrzewski and D. Delande,
Chaotic Rydberg atoms with broken time-reversal symetry
Phys. Rev. Lett., 83, 2922 (1999).
Erratum
Phys. Rev. Lett. 84, 200 (2000).

1999.5 Conference
K. Sacha, R. Gebarowski and J. Zakrzewski
Classical thresholds for H atom ionization by circularly polarized microwave fields,
Nonlinear Phenomena in Complex Systems, 2, 38 (1999).

2000

2000.1
79. K. Sacha, J. Zakrzewski and D. Delande,
Breaking time reversal symmetry in chaotic driven Rydberg atoms
Annals of Physics 283, 94 (2000).

2001

2001.1
80. K. Sacha, and J. Zakrzewski,
Driven Rydberg atoms reveal quartic level repulsion
Phys. Rev. Lett. 86, 2269 (2001).

2001.2
81. Z. P. Karkuszewski, K. Sacha, and J. Zakrzewski,
Method for collective excitation of a Bose-Einstein condensate
Phys. Rev. A 63, 061601(R) (2001).

2001.3
82. P. Pakonski and J. Zakrzewski,
Kepler Map for H atom driven by microwaves with arbitrary polarization
Acta Phys. Polon. B32, 2801 (2001).

2002

2002.1
83. B. Damski, Z. P. Karkuszewski, K. Sacha, and J. Zakrzewski,
Simple method for excitation of a Bose-Einstein condensate
Phys. Rev. A 65, 013604 (2002).

2002.2
84. Z. P. Karkuszewski, J. Zakrzewski and W. H. Zurek,
Breakdown of correspondence in chaotic systems: Ehrenfest versus localization times
Phys. Rev. A 65, 042113 (2002).

2002.3
85. B. Damski, K. Sacha, and J. Zakrzewski,
Collective excitation of trapped degenerate Fermi gases
J. Phys. B., 35, L153 (2002).

2002.4
86. B. Damski, K. Sacha, and J. Zakrzewski,
Stirring Bose-Einstein condensate
J. Phys. B., 35, 4051 (2002).

2002.5 Warning! Review paper, large PDF file: 7.5 MBytes
87. A. Buchleitner, D. Delande, and J. Zakrzewski
Non-dispersive wave packets in periodically driven quantum systems
Phys. Rep. 368, 409-547 (2002).

2002.6 Conference
Manipulating the shape of electronic non-dispersive wave-packets in the hydrogen atom: numerical tests in realistic experimental condition
D. Delande, K. Sacha and J. Zakrzewski, Acta Phys. Polon. B 33, 2097 (2002).

2003

2003.1
88. B. Damski, J. Zakrzewski, L. Santos, P. Zoller, and M. Lewenstein,
Atomic Bose and Anderson glasses in optical lattices
Phys. Rev. Lett. 91, 080403 (2003).
2003.2
89. D. Delande and J. Zakrzewski,
Experimentally attainable example of chaotic tunneling: The hydrogen atom in parallel static electric and magnetic fields
Phys. Rev. A68, 062110 (2003).

2004

2004.1
90. A. Sanpera, A. Kantian, L. Sanchez-Palencia, J. Zakrzewski, and M. Lewenstein
Atomic Fermi-Bose mixtures in inhomogeneous and random lattices: From Fermi glass to quantum spin glass and quantum percolation, cond-mat/0402375; Phys. Rev. Lett. 93, 040401 (2004).

2005

2005.1
91.J.S. Prauzner-Bechcicki, K. Sacha, B. Eckhardt, and J. Zakrzewski
Nonsequential double ionization of molecules
Phys. Rev. A 71 , 033407 (2005).

2005.2
92. J. Zakrzewski
Mean field dynamics of superfluid-insulator phase transition in a gas of ultra cold atoms,
Phys. Rev. A71, 043601 (2005) Erratum: Phys. Rev. A 72, 039904 (2005) .

2005.3
93. T. Schulte, S. Drenkelforth, J. Kruse, W. Ertmer, J. J. Arlt, K. Sacha, J.Zakrzewski, and M. Lewenstein;
Routes towards Anderson localization of Bose-Einstein condensates in disordered optical lattices cond-mat/0507453, Phys. Rev. Lett. 95, 170411 (2005).

2005.4
94. A.Kubasiak, J.K. Korbicz,, J.Zakrzewski, and M. Lewenstein;
Fermi-Dirac statistics and the number theory quant-ph/0507201; Europhys. Lett. 72, 506 (2005).

2006

2006.1 Conference
T. Schulte, S. Drenkelforth, J. Kruse, W. Ertmer, J. J. Arlt, A. Kantian, L. Sanchez-Palencia, L. Santos, A. Sanpera, K. Sacha, P. Zoller, M. Lewenstein, and J.Zakrzewski
Cold atomic gases in optical lattices with disorder
Invited talk at 2nd Workshop on Quantum Chaos and Localisation Phenomena, May 19-22 2005 Warsaw Acta Physica Polonica A109, 89 (2006).

2006.2 Conference
L. Sanchez-Palencia, V. Ahufinger, A. Kantian, J.Zakrzewski, A. Sanpera, and M. Lewenstein,
``Strongly correlated Fermi-Bose mixtures in disordered optical lattices'', J. Phys. B39 S121-S134 (2006).

2006.3
95. Bogdan Damski and Jakub Zakrzewski, ``The Mott insulator phase of the one dimensional Bose-Hubbard model: a high order perturbative study'', cond-mat/0603030, Phys. Rev. A 74, 043609 (2006).

2006.4
96. T. Schulte, S. Drenkelforth, J. Kruse, R. Tiemeyer, K. Sacha, J.Zakrzewski, M. Lewenstein, W. Ertmer, and J. J. Arlt
Analysis of Localization Phenomena in weakly Interacting Disordered Lattice Gases, New Journal of Physics 8 , 230 (2006).

2007

2007.1
97. Jakub S. Prauzner-Bechcicki, Krzysztof Sacha, Bruno Eckhardt, and Jakub Zakrzewski
Time resolved quantum dynamics of double ionization in strong laser fields
Phys. Rev. Lett. 98, 203002 (2007).

2007.2 Conference
Jakub Zakrzewski
``Tight binding models in cold atoms physics'', Acta Phys. Polon. B38 1673-84 (2007).

2007.3 Conference
Jakub S. Prauzner-Bechcicki, Krzysztof Sacha, Bruno Eckhardt, and Jakub Zakrzewski
``Nonsequential double ionization of atoms in strong laser fields'', Acta Phys. Polon. A112 699-706 (2007).

2008

2008.1
98. Bruno Eckhardt, Jakub S. Prauzner-Bechcicki, Krzysztof Sacha, and Jakub Zakrzewski
Suppression of correlated electron escape in double ionization in strong laser fields
Phys. Rev. A77, 015402 (2008).

2008.2
99.Jakub S. Prauzner-Bechcicki, Krzysztof Sacha, Bruno Eckhardt, and Jakub Zakrzewski
Quantum model for double ionization of atoms in strong laser fields
Phys. Rev. A78, 013419 (2008).

2008.3 conference
Jakub Zakrzewski and Dominique Delande
Accurate determination of the superfluid-insulator transition in the one-dimensional Bose-Hubbard model
CP1076, Le't face chaos through nonlinear dynamics, Maribor 2008.

2009

2009.1
100. D. Delande and J. Zakrzewski,
Compression as a tool to detect Bose glass in cold atoms experiments,
Phys. Rev. Lett. 102, 085301(2009),Los Alamos: arXiv:0810.4411
2009.2
101. J. Zakrzewski and D. Delande,
Breakdown of adiabaticity when loading ultracold atoms in optical lattices,
Phys. Rev. A 80, 013602(2009),Los Alamos: arXiv:0902.1117
2009.3
102. K. Sacha, C. A. MŁeller, D. Delande, J. Zakrzewski,
Anderson localization of solitons,
Phys. Rev. Lett. 103, 210402(2009), Los Alamos: arXiv:0907.0338
2009.4 conference
K. Sacha, D. Delande, J. Zakrzewski,
Quantum bright soliton in a disorder potential, Acta Physica Polonica A116, 772 (2009).
arXiv:0911.0826

2010

103. B. Eckhardt, J. S. Prauzner-Bechcicki, K. Sacha, and J. Zakrzewski,
Phase effects in double ionization by strong short pulses,
Chem. Phys. 370, 168 (2010).

2011

2011.1
104. Mateusz Lacki, Simone Paganelli, Veronica Ahufinger, Anna Sanpera, Jakub Zakrzewski,
Disordered spinor Bose-Hubbard model Phys. Rev. A 83, 013605(2011), arXiv:1007.5177
2011.2
105. T. Swislocki, T. Sowinski, J. Pietraszewicz, M. Brewczyk, M. Lewenstein, J. Zakrzewski, M. Gajda,
Tunable dipolar resonances and Einstein-de Haas effect in a Rb-87 atoms condensatePhys. Rev. A 83, 063617 (2011), arXiv:1102.1566
2011.3
106. Simone Paganelli, Mateusz Lacki, Veronica Ahufinger, Jakub Zakrzewski, Anna Sanpera,
Spin effects in Bose-Glass phases,
J. Low Temp. Phys. 165, 227-238 (2011). arXiv:1105.2746
2011.4
107. Michal Maik, Pierfrancesco Buonsante, Alessandor Vezzani,  and Jakub Zakrzewski,
Dipolar bosons on an optical lattice ring, Phys. Rev. A84, 053615 (2011). arXiv:1107.1103
2011.5 conference
Mateusz Lacki, Dominique Delande, Jakub Zakrzewski,
Extracting information from non adiabatic dynamics: excited symmetric states of the Bose-Hubbard model
Acta Physica Polonica A120, A-178 (2011)arXiv:1107.5937

2012

2012.1
108.Krzysztof Sacha, Katarzyna Targonska, Jakub Zakrzewski,
Frustration and time reversal symmetry breaking for Fermi and Bose-Fermi systems
Phys. Rev. A85,053613 (2012)    arXiv:1112.0972

2012.2
109.J. Pietraszewicz, T. Sowinski, M. Brewczyk, J. Zakrzewski, M. Lewenstein, M. Gajda,
Two component Bose-Hubbard model with higher angular momentum states
Phys. Rev. A85,053638 (2012)    arXiv:1104.2512

2012.3
110.Mateusz Lacki, Dominique Delande, Jakub Zakrzewski,
Numerical Computation of Dynamically Important Excited States of Many-Body Systems,
Phys. Rev. A86,013602 (2012)   arXiv:1106.4906


2012.4
111. Michal Maik, Philipp Hauke, Omjyoti Dutta, Jakub Zakrzewski, and Maciej Lewenstein,
Quantum spin models with long-range interactions and tunnelings: A quantum Monte Carlo study
New J. Phys. 14 113006 (2012) arXiv:1206.1752

2013

2013.1
112.Mateusz Lacki, Dominique Delande, Jakub Zakrzewski,
Dynamics of cold bosons in optical lattices: Effects of higher Bloch bands
New J. Phys. 15 013062 (2013) arXiv:1206.6740

2013.2
113. D. Delande, K. Sacha, M. Plodzien, S. K. Avazbaev, and J. Zakrzewski,
Many-body Anderson localizationin one-dimensional systems arXiv:1207.2001

2013.3
114.Mateusz Lacki, and Jakub Zakrzewski,
Fast dynamics for atoms in optical lattices
Phys. Rev. Lett.110,065301 (2013)   arXiv:1210.7957
2013.4
115.T. Sowinski, M. Lacki, O. Dutta, J. Pietraszewicz, P. Sierant, M. Gajda, J. Zakrzewski, M. Lewenstein,
Tunneling-Induced Restoration of the Degeneracy and the Time-Reversal Symmetry Breaking in Optical Lattices
Phys. Rev. Lett.111,215302 (2013)    arXiv:1304.6299

2013.5
116.M. Maik, P. Hauke, O. Dutta, M. Lewenstein, and J. Zakrzewski
Density dependent tunneling in the extended Bose-Hubbard model
New J. Phys. 15, 113041 (2013)     arXiv:1306.5608

Submitted Papers

Jan Major, Mateusz Lacki, and Jakub Zakrzewski
Variational Bose-Hubbard model revisited
arXiv:1311.7510

Mateusz Lacki, Bogdan Damski, and Jakub Zakrzewski
Numerical studies of ground state fidelity of the Bose-Hubbard model
arXiv:1311.1954

Omjyoti Dutta, Maciej Lewenstein, and Jakub Zakrzewski,
Frustration by population trapping with polar molecules
arXiv:1310.7757

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