Author Paeckel, Sebastian

1 to 6 of 6 Items
  • 2017 Journal Article | Research Paper | 
    ​ ​Automated construction of (1)ehBinvariant matrix-product operators from graph representations​
    Paeckel, S.; Köhler, T. & Manmana, S. R. ​ (2017) 
    SciPost physics3(5).​ DOI: https://doi.org/10.21468/SciPostPhys.3.5.035 
    Details  DOI 
  • 2018 Journal Article | Research Paper
    ​ ​Relaxation of photoexcitations in polaron-induced magnetic microstructures​
    Köhler, T.; Rajpurohit, S.; Schumann, O.; Paeckel, S.; Biebl, F. R. A.; Sotoudeh, M. & Kramer, S. C. et al.​ (2018) 
    Physical Review. B97(23).​ DOI: https://doi.org/10.1103/PhysRevB.97.235120 
    Details  DOI  arXiv 
  • 2019 Journal Article | Research Paper
    ​ ​Tripartite information, scrambling, and the role of Hilbert space partitioning in quantum lattice models​
    Schnaack, O.; Bölter, N.; Paeckel, S.; Manmana, S. R. ; Kehrein, S.   & Schmitt, M.​ (2019) 
    Physical Review B100(22).​ DOI: https://doi.org/10.1103/PhysRevB.100.224302 
    Details  DOI  arXiv 
  • 2019 Journal Article | Research Paper | 
    ​ ​Time-evolution methods for matrix-product states​
    Paeckel, S.; Köhler, T.; Swoboda, A.; Manmana, S. R. ; Schollwöck, U. & Hubig, C.​ (2019) 
    Annals of Physics411 pp. 167998​.​ DOI: https://doi.org/10.1016/j.aop.2019.167998 
    Details  DOI 
  • 2021 Journal Article | Research Paper
    ​ ​Comparative study of state-of-the-art matrix-product-state methods for lattice models with large local Hilbert spaces without U(1) symmetry​
    Stolpp, J.; Köhler, T.; Manmana, S. R. ; Jeckelmann, E.; Heidrich-Meisner, F.   & Paeckel, S.​ (2021) 
    Computer Physics Communications269 art. S0010465521002186​.​ DOI: https://doi.org/10.1016/j.cpc.2021.108106 
    Details  DOI  arXiv 
  • 2021 Journal Article | 
    ​ ​Efficient and flexible approach to simulate low-dimensional quantum lattice models with large local Hilbert spaces​
    Köhler, T.; Stolpp, J. & Paeckel, S.​ (2021) 
    SciPost Physics10(3) art. 058​.​ DOI: https://doi.org/10.21468/SciPostPhys.10.3.058 
    Details  DOI 

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