9 Publications

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[9]
2017 | Journal Article | IST-REx-ID: 1109   OA
Shepperson, B., Søndergaard, A., Christiansen, L., Kaczmarczyk, J., Zillich, R., Lemeshko, M., & Stapelfeldt, H. (2017). Laser-induced rotation of iodine molecules in helium nanodroplets: Revivals and breaking-free. Physical Review Letters, 118(20). https://doi.org/10.1103/PhysRevLett.118.203203
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[8]
2017 | Journal Article | IST-REx-ID: 1162   OA
Spałek, J., Zegrodnik, M., & Kaczmarczyk, J. (2017). Universal properties of high temperature superconductors from real space pairing t-J-U model and its quantitative comparison with experiment. Physical Review B - Condensed Matter and Materials Physics, 95(2). https://doi.org/10.1103/PhysRevB.95.024506
View | DOI | Download (ext.)
 
[7]
2017 | Journal Article | IST-REx-ID: 1163
Wysokiński, M., & Kaczmarczyk, J. (2017). Unconventional superconductivity in generalized Hubbard model role of electron–hole symmetry breaking terms. Journal of Physics: Condensed Matter, 29(8). https://doi.org/10.1088/1361-648X/aa532f
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[6]
2016 | Journal Article | IST-REx-ID: 1368   OA
Wysokiński, M., Kaczmarczyk, J., & Spałek, J. (2016). Correlation driven d wave superconductivity in Anderson lattice model: Two gaps. Physical Review B - Condensed Matter and Materials Physics, 94(2). https://doi.org/10.1103/PhysRevB.94.024517
View | DOI | Download (ext.)
 
[5]
2016 | Journal Article | IST-REx-ID: 1419
Tomski, A., & Kaczmarczyk, J. (2016). Gutzwiller wave function for finite systems: Superconductivity in the Hubbard model. Journal of Physics: Condensed Matter, 28(17). https://doi.org/10.1088/0953-8984/28/17/175701
View | DOI
 
[4]
2016 | Journal Article | IST-REx-ID: 1352   OA
Kaczmarczyk, J., Schickling, T., & Bünemann, J. (2016). Coexistence of nematic order and superconductivity in the Hubbard model. Physical Review B - Condensed Matter and Materials Physics, 94(8). https://doi.org/10.1103/PhysRevB.94.085152
View | DOI | Download (ext.)
 
[3]
2016 | Journal Article | IST-REx-ID: 1343   OA
Kaczmarczyk, J., Weimer, H., & Lemeshko, M. (2016). Dissipative preparation of antiferromagnetic order in the Fermi-Hubbard model. New Journal of Physics, 18(9). https://doi.org/10.1088/1367-2630/18/9/093042
View | Files available | DOI
 
[2]
2015 | Journal Article | IST-REx-ID: 1695   OA
Kaczmarczyk, J., Schickling, T., & Bünemann, J. (2015). Evaluation techniques for Gutzwiller wave functions in finite dimensions. Physica Status Solidi (B): Basic Solid State Physics, 252(9), 2059–2071. https://doi.org/10.1002/pssb.201552082
View | DOI | Download (ext.)
 
[1]
2015 | Journal Article | IST-REx-ID: 1696   OA
Wysokiński, M., Kaczmarczyk, J., & Spałek, J. (2015). Gutzwiller wave function solution for Anderson lattice model: Emerging universal regimes of heavy quasiparticle states. Physical Review B, 92(12). https://doi.org/10.1103/PhysRevB.92.125135
View | DOI | Download (ext.)
 

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9 Publications

Mark all

[9]
2017 | Journal Article | IST-REx-ID: 1109   OA
Shepperson, B., Søndergaard, A., Christiansen, L., Kaczmarczyk, J., Zillich, R., Lemeshko, M., & Stapelfeldt, H. (2017). Laser-induced rotation of iodine molecules in helium nanodroplets: Revivals and breaking-free. Physical Review Letters, 118(20). https://doi.org/10.1103/PhysRevLett.118.203203
View | DOI | Download (ext.)
 
[8]
2017 | Journal Article | IST-REx-ID: 1162   OA
Spałek, J., Zegrodnik, M., & Kaczmarczyk, J. (2017). Universal properties of high temperature superconductors from real space pairing t-J-U model and its quantitative comparison with experiment. Physical Review B - Condensed Matter and Materials Physics, 95(2). https://doi.org/10.1103/PhysRevB.95.024506
View | DOI | Download (ext.)
 
[7]
2017 | Journal Article | IST-REx-ID: 1163
Wysokiński, M., & Kaczmarczyk, J. (2017). Unconventional superconductivity in generalized Hubbard model role of electron–hole symmetry breaking terms. Journal of Physics: Condensed Matter, 29(8). https://doi.org/10.1088/1361-648X/aa532f
View | DOI
 
[6]
2016 | Journal Article | IST-REx-ID: 1368   OA
Wysokiński, M., Kaczmarczyk, J., & Spałek, J. (2016). Correlation driven d wave superconductivity in Anderson lattice model: Two gaps. Physical Review B - Condensed Matter and Materials Physics, 94(2). https://doi.org/10.1103/PhysRevB.94.024517
View | DOI | Download (ext.)
 
[5]
2016 | Journal Article | IST-REx-ID: 1419
Tomski, A., & Kaczmarczyk, J. (2016). Gutzwiller wave function for finite systems: Superconductivity in the Hubbard model. Journal of Physics: Condensed Matter, 28(17). https://doi.org/10.1088/0953-8984/28/17/175701
View | DOI
 
[4]
2016 | Journal Article | IST-REx-ID: 1352   OA
Kaczmarczyk, J., Schickling, T., & Bünemann, J. (2016). Coexistence of nematic order and superconductivity in the Hubbard model. Physical Review B - Condensed Matter and Materials Physics, 94(8). https://doi.org/10.1103/PhysRevB.94.085152
View | DOI | Download (ext.)
 
[3]
2016 | Journal Article | IST-REx-ID: 1343   OA
Kaczmarczyk, J., Weimer, H., & Lemeshko, M. (2016). Dissipative preparation of antiferromagnetic order in the Fermi-Hubbard model. New Journal of Physics, 18(9). https://doi.org/10.1088/1367-2630/18/9/093042
View | Files available | DOI
 
[2]
2015 | Journal Article | IST-REx-ID: 1695   OA
Kaczmarczyk, J., Schickling, T., & Bünemann, J. (2015). Evaluation techniques for Gutzwiller wave functions in finite dimensions. Physica Status Solidi (B): Basic Solid State Physics, 252(9), 2059–2071. https://doi.org/10.1002/pssb.201552082
View | DOI | Download (ext.)
 
[1]
2015 | Journal Article | IST-REx-ID: 1696   OA
Wysokiński, M., Kaczmarczyk, J., & Spałek, J. (2015). Gutzwiller wave function solution for Anderson lattice model: Emerging universal regimes of heavy quasiparticle states. Physical Review B, 92(12). https://doi.org/10.1103/PhysRevB.92.125135
View | DOI | Download (ext.)
 

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