apl. Prof. Dr. Salvatore R. Manmana

 
Publications: (under construction)

ORCID-ID: ORCID iD icon https://orcid.org/0000-0002-4070-0576

  • T. Blum, R.M. Noack, and S.R. Manmana
    Time evolution of the local density of states of strongly correlated fermions coupled to a nanoprobe
    arXiv:2407.15609.
     
  • M. Merboldt, M. Schüler, D. Schmitt, J.P. Bange, W. Bennecke, K. Gadge, K. Pierz, H.W. Schumacher, D. Momeni, D. Steil, S.R. Manmana, M. Sentef, M. Reutzel, and S. Mathias
    Observation of Floquet states in graphene
    arXiv:2404.12791.
     
  • H. Böckmann, J.G. Horstmann, F. Kurtz, M. Buriks, K. Gadge, S.R. Manmana, S. Wippermann, and C. Ropers
    Valley-controlled photoswitching of metal-insulator nanotextures
    arXiv:2404.02503.
     
  • V. Mishra, S.R. Manmana, and S. Kehrein
    Rate Function Modelling of Quantum Many-Body Adiabaticity
    arXiv:2402.17415.
     
  • S. Paeckel, T. Köhler, S.R. Manmana, and B. Lenz
    Matrix-product-state-based band-Lanczos solver for quantum cluster approaches
    arXiv:2310.10799.
     
  • S. Bollmann, A. Osterkorn, E.J. König, and S.R. Manmana
    Lifshitz transition in the phase diagram of two-leg t-J ladder systems at low filling
    Phys. Rev. B 108, 155148 (2023) (open access), arXiv:2211.13065.
     
  • S. Marten, G. Bollmark, T. Köhler, S.R. Manmana, and A. Kantian
    Transient superconductivity in three-dimensional Hubbard systems by combining matrix product states and self-consistent mean-field theory
    SciPost Phys. 15, 236 (2023), arXiv:2207.09841.
     
  • A. Osterkorn, C. Meyer, and S.R. Manmana
    In-Gap Band Formation in a Periodically Driven Charge Density Wave Insulator
    Nat. Commun. Phys. 6, 245 (2023) (open access), arXiv:2205.09557.
     
  • R.K. Kessing, P.-Y. Yang, S.R. Manmana, and J. Cao
    Long-range non-equilibrium coherent tunneling induced by fractional vibronic resonances
    J. Phys. Chem. Lett. 2022, 13, 29, 6831–6838, arXiv:2111.06137.
     
  • C. Meyer and S.R. Manmana
    Formation of spinful dark excitons in Hubbard systems with magnetic superstructures
    arXiv:2109.07037.
     
  • M. Keunecke, D. Schmitt, M. Reutzel, M. Weber, C. Möller, G.S.M. Jansen, T.A. Mishra, A. Osterkorn, W. Bennecke, K. Pierz, H.W. Schumacher, D.M. Pakdehi, D. Steil, S.R. Manmana, S. Steil, S. Kehrein, H.C. Schneider, and S. Mathias
    Direct Access to Auger recombination in Graphene
    arXiv:2012.01256.
     
  • J. Stolpp, T. Köhler, S.R. Manmana, E. Jeckelmann, F. Heidrich-Meisner, and S. Paeckel
    Comparative Study of State-of-the-Art Matrix-Product-State Methods for Lattice Models with Large Local Hilbert Spaces
    Computer Physics Communications, Volume 269, December 2021, 108106, arXiv:2011.07412.
     
  • M. Keunecke, M. Reutzel, D. Schmitt, A. Osterkorn, T.A. Mishra, C. Möller, W. Bennecke, G.S. Matthijs Jansen, D. Steil, S.R. Manmana, S. Steil, S. Kehrein, and S. Mathias
    Electromagnetic dressing of the electron energy spectrum of Au(111) at high momenta
    Phys. Rev. B (rapid comm.) 102, 161403(R) (2020), arXiv:2009.00256.
     
  • S. Paeckel, B. Fauseweh, A. Osterkorn, T. Köhler, D. Manske, and S.R. Manmana
    Detecting Superconductivity Out-of-Equilibrium
    Phys. Rev. B (rapid comm.) 101, 180507(R) (2020), arXiv:1905.08638.
     
  • S. Paeckel, T. Köhler, A. Swoboda, S.R. Manmana, U. Schollwöck, and C. Hubig
    Time-evolution methods for matrix-product states (Review Article)
    Annals of Physics 411, 167998 (2019), arXiv:1901.05824.
     
  • O. Schnaack, S. Paeckel, S.R. Manmana, S. Kehrein, and M. Schmitt
    Tripartite information, scrambling, and the role of Hilbert space partitioning in quantum lattice models
    Phys. Rev. B 100, 224302 (2019), arXiv:1808.05646.
     
  • T. Köhler, S. Paeckel, C. Meyer, and S.R. Manmana,
    Formation of Spatial Patterns by Spin-selective Excitations of Interacting Fermions
    Phys. Rev. B 102, 235166 (2020), arXiv:1808.02138v2.
     
  • A.D. Kühn, L. Cevolani, and S.R. Manmana,
    Suppression of the horizon effect in pairing correlation functions of $t$-$J$ chains after a quantum quench
    Phys. Rev. A 98, 013616 (2018), arXiv:1804.04069.
     
  • S.R. Manmana, M. Möller, R. Gezzi, and K.R.A. Hazzard
    Correlations and enlarged superconducting phase of $t$-$J_\perp$ chains of ultracold molecules on optical lattices
    Phys. Rev. A 96, 043618 (2017), arXiv:1707.00343; one figure selected for the Phys. Rev. A Kaleidoscope.
     
  • S. Paeckel, T. Köhler, and S.R. Manmana,
    Automated construction of U(1)-invariant matrix-product operators from graph representations
    SciPost Phys. 3, 035 (2017), arXiv:1706.05338.
     
  • G. Ehlers, B. Lenz, S.R. Manmana, and R.M. Noack,
    Anisotropy crossover in the frustrated Hubbard model on four-chain cylinders
    Phys. Rev. B 97, 035118 (2018), arXiv:1705.04450.
     
  • J. Becker, T. Köhler, A.C. Tiegel, S.R. Manmana, S. Wessel, and A. Honecker,
    Finite-temperature dynamics and thermal intra-band magnon scattering in Haldane spin-one chains
    Phys. Rev. B (rapid comm.) 96, 060403(R) (2017), arXiv:1703.04652.
     
  • B. Lenz, R. Gezzi, and S.R. Manmana,
    Variational Cluster Approach to Superconductivity and Magnetism in the Kondo Lattice Model
    Phys. Rev. B 96, 155119 (2017), arXiv:1612.04693.
     
  • T. Köhler, S. Rajpurohit, O. Schumann, S. Paeckel, F.R.A. Biebl, M. Sotoudeh, S.C. Kramer, P.E. Blöchl, S. Kehrein, and S.R. Manmana,
    Relaxation of photoexcitations in polaron-induced magnetic microstructures
    Phys. Rev. B 97, 235120 (2018), arXiv:1610.07246.
     
  • E.S. Klyushina, A.C. Tiegel, B. Fauseweh, A.T.M.N. Islam, J.T. Park, B. Klemke, A. Honecker, G.S. Uhrig, S.R. Manmana, and B. Lake,
    Magnetic excitations in the S = 1/2 antiferromagnetic-ferromagnetic chain compound BaCu2V2O8 at zero and finite temperature
    Phys. Rev. B (rapid comm.) 93, 241109(R) (2016), arXiv:1602.06184.
     
  • A. Tiegel, A. Honecker, T. Pruschke, A. Ponomaryov, S.A. Zvyagin, R. Feyerherm, and S.R. Manmana,
    Dynamical properties of the sine-Gordon quantum spin magnet Cu-PM at zero and finite temperature
    Phys. Rev. B 93, 104411 (2016), arXiv:1511.07880.
     
  • B. Lenz, S.R. Manmana, T. Pruschke, F.F. Assaad, and M. Raczkowski,
    Mott Quantum Criticality in the Anisotropic 2D Hubbard Model
    Phys. Rev. Lett. 116, 086403 (2016) , arXiv:1508.07886.
     
  • K.R.A. Hazzard, M. van den Worm, M. Foss-Feig, S.R. Manmana, E. Dalla Torre, T. Pfau, M. Kastner, and A.M. Rey,
    Quantum correlations and entanglement in far-from-equilibrium spin systems
    Phys. Rev. A 90, 063622 (2014), arXiv:1406.0937.
     
  • G.R. Foltin, S.R. Manmana, and K.P. Schmidt,
    Exotic magnetization plateaus in a quasi-two-dimensional Shastry-Sutherland model
    Phys. Rev. B 90, 104404 (2014), arXiv:1405.3260.
     
  • A.C. Tiegel, S.R. Manmana, T. Pruschke, and A. Honecker,
    Matrix product state formulation of frequency-space dynamics at finite temperatures
    Phys. Rev. B (rapid comm.) 90, 060406(R) (2014), arXiv:1312.6044.
     
  • F.H.L. Essler, S. Kehrein, S.R. Manmana, and N.J. Robinson,
    Quench Dynamics in a Model with Tuneable Integrability Breaking
    Phys. Rev. B 89, 165104 (2014), arXiv:1311.4557.
     
  • J. Eisert, M. van den Worm, S.R. Manmana, and M. Kastner
    Breakdown of quasi-locality in long-range quantum lattice models
    Phys. Rev. Lett. 111, 260401 (2013), arXiv:1309.2308.
     
  • S. Mandt, A.E. Feiguin, and S.R. Manmana,
    Relaxation towards negative temperatures in bosonic systems: Generalized Gibbs ensembles and beyond integrability
    Phys. Rev. A 88, 043643 (2013), arXiv:1307.7188.
     
  • Y.H. Matsuda, N. Abe, S. Takeyama, H. Kageyama, P. Corboz, A. Honecker, S.R. Manmana, G.R. Foltin, K.P. Schmidt, and F. Mila,
    Magnetization of SrCu2(BO3)2 in ultrahigh magnetic fields up to 118 T
    Phys. Rev. Lett. 111, 137204 (2013), arXiv:1308.4151.
     
  • S. Li, S.R. Manmana, A.M. Rey, R. Hipolito, A. Reinhard, J.-F. Riou, L.A. Zundel, and D.S. Weiss,
    Self-trapping dynamics in a 2D optical lattice
    Phys. Rev. A 88, 023419 (2013), arXiv:1305.4442.
     
  • F. Michaud, S.R. Manmana, and F. Mila
    Realization of higher Wess-Zumino-Witten models in spin chains
    Phys. Rev. B (rapid comm.) 87, 140404(R) (2013) (Editors' suggestion), arXiv:1301.5719.
     
  • J. Carrasquilla, S.R. Manmana, and M. Rigol
    Scaling of the gap, fidelity susceptibility, and Bloch oscillations across the superfluid to Mott insulator transition in the one-dimensional Bose-Hubbard model
    Phys. Rev. A 87, 043606 (2013), arXiv:1212.2219.
     
  • S.R. Manmana, E.M. Stoudenmire, K.R.A. Hazzard, A.M. Rey, and A.V. Gorshkov
    Topological phases in ultracold polar-molecule quantum magnets
    Phys. Rev. B (rapid comm.) 87, 081106(R) (2013), arXiv:1210.5518.
     
  • K.R.A. Hazzard, S.R. Manmana, M. Foss-Feig, and A.M. Rey
    Far from equilibrium quantum magnetism with ultracold polar molecules
    Phys. Rev. Lett. 110, 075301 (2013), arXiv:1209.4076.
    See also research highlight at JILA
     
  • L. Bonnes, K.R.A. Hazzard, S.R. Manmana, A.M. Rey, and S. Wessel
    Adiabatic loading of one-dimensional SU(N) alkaline earth fermions in optical lattices
    Phys. Rev. Lett. 109, 205305 (2012), arXiv:1207.3900.
     
  • S.R. Manmana, A.M. Essin, R.M. Noack, and V. Gurarie
    Topological invariants and interacting one-dimensional fermionic systems
    Phys. Rev. B 86, 205119 (2012) (Editors' suggestion), arXiv:1205.5095.
     
  • C.P. Rubbo, I.I. Satija, W.P. Reinhardt, R. Balakrishnan, A.M. Rey, and S.R. Manmana
    Quantum dynamics of solitons in strongly interacting systems on optical lattices
    Phys. Rev. A 85, 053617 (2012), arXiv:1202.3400; one figure selected for the Phys. Rev. A Kaleidoscope.
     
  • F. Michaud, F. Vernay, S.R. Manmana, and F. Mila
    Antiferromagnetic Spin-S Chains with Exactly Dimerized Ground States
    Phys. Rev. Lett. 108, 127202 (2012), arXiv:1110.3394
     
  • S.R. Manmana, K.R.A. Hazzard, G. Chen, A.E. Feiguin, and A.M. Rey
    SU(N) magnetism in chains of ultracold alkaline earth atoms: Mott transitions and quantum correlations
    Phys. Rev. A 84, 043601 (2011), arXiv:1108.2327
    Mentioned as research highlight at JILA
     
  • A.V. Gorshkov, S.R. Manmana, G. Chen, J. Ye, E. Demler, M.D. Lukin, and A.M. Rey
    Tunable Superfluidity and Quantum Magnetism with Ultracold Polar Molecules
    Phys. Rev. Lett. 107, 115301 (2011), arXiv:1106.1644
    See also research highlights at JILA and synopsis in Physics
    2011 DARPA-OLE best theoretical paper award.
     
  • A.V. Gorshkov, S.R. Manmana, G. Chen, E. Demler, M.D. Lukin, and A.M. Rey
    Quantum magnetism with polar alkali-metal dimers
    Phys. Rev. A 84, 033619 (2011), arXiv:1106.1655
    See also research highlights at JILA and synopsis in Physics
     
  • C.P. Rubbo, S.R. Manmana, B.M. Peden, M.J. Holland, and A.M. Rey
    Resonantly Enhanced Tunneling and Transport of Ultracold Atoms on Tilted Optical Lattices
    Phys. Rev. A 84, 033638 (2011), arXiv:1106.0326
     
  • S.R. Manmana, A.M. Läuchli, F.H.L. Essler, and F. Mila
    Phase diagram and continuous pair-unbinding transition of the bilinear-biquadratic S=1 Heisenberg chain in a magnetic field
    Phys. Rev. B 83, 184433 (2011), arXiv:1012.4518
     
  • A. Moreno, A. Muramatsu, and S.R. Manmana
    Ground-State Phase Diagram of the 1D t-J model
    Phys. Rev. B 83, 205113 (2011), arXiv:1012.4028
     
  • S.A. Zvyagin, E. Cizmar, M. Ozerov, J. Wosnitza, R. Feyerherm, S.R. Manmana, and F. Mila
    Field-Induced Gap in a Quantum Spin-1/2 Chain in a Strong Magnetic Field
    Phys. Rev. B (rapid comm.) 83, 060409(R) (2011), arXiv:1010.6141
     
  • S.R. Manmana, J.-D. Picon, K.P. Schmidt, and F. Mila
    Unconventional magnetization plateaus in a Shastry-Sutherland spin tube
    EPL 94, 67004 (2011), arXiv:1003.1696
     
  • F. Michaud, T. Coletta, S.R. Manmana, J.-D. Picon, and F. Mila
    Frustration induced plateaus in $S \geq 1/2$ Heisenberg spin ladder systems
    Phys. Rev. B 81, 014407 (2010), arXiv:0907.1461
     
  • I. Rousochatzakis, S.R. Manmana, A.M. Läuchli, B. Normand, and F. Mila
    Dzyaloshinskii-Moriya anisotropy and non-magnetic impurities in the s =1/2 kagome system ZnCu$_3$(OH)$_6$Cl$_2$
    Phys. Rev. B 79, 214415 (2009), arXiv:0903.2884
     
  • F. Heidrich-Meisner, S.R. Manmana, M. Rigol, A. Muramatsu, A.E. Feiguin, and E. Dagotto
    Quantum distillation: dynamical generation of low-entropy states of strongly correlated fermions in an optical lattice
    Phys. Rev. A (rapid comm.) 80, 041603(R) (2009), arXiv:0903.2017
     
  • S.R. Manmana, S. Wessel, R.M. Noack, and A. Muramatsu
    Time evolution of correlations in strongly interacting fermions after a quantum quench
    Phys. Rev. B 79, 155104 (2009), arXiv:0812.0561
     
  • S.R. Manmana and F. Mila
    Torque anomalies at magnetization plateaux in quantum magnets with Dzyaloshinskii-Moriya interactions,
    EPL 85, 27010 (2009), arXiv:0810.5329
     
  • S.R. Manmana, S. Wessel, R.M. Noack, and A. Muramatsu
    Strongly correlated fermions after a quantum quench
    Phys. Rev. Lett. 98, 210405 (2007), cond-mat/0612030
     
  • S. Miyahara, J.-B. Fouet, S.R. Manmana, R.M. Noack, H. Mayaffre, I. Sheikin, C. Berthier, and F. Mila
    Uniform and staggered magnetizations induced by Dzyaloshinskii-Moriya interactions in isolated and coupled spin 1/2 dimers in a magnetic field
    Phys. Rev. B 75, 184402 (2007), cond-mat/0610861.
     
  • The ALPS collaboration (A. F. Albuquerque, et al.)
    The ALPS project release 1.3: open source software for strongly correlated systems
    J. Magn. Mag. Mat. 310, 1187 (2007).
     
  • K. Rodriguez, S. R. Manmana, M. Rigol, R.M. Noack, and A. Muramatsu
    Coherent matter waves emerging from Mott-insulators
    Invited paper to the focus issue Cold Atoms in Optical Lattices.
    New J. Phys. 8 , 169 (2006), cond-mat/0606155.
     
  • S. R. Manmana, A. Muramatsu, R. M. Noack
    Collapse and Revival Starting from a Luttinger Liquid
    AIP Conf. Proc. 816, 198-203 (2006).
    Conference proceedings for ESF exploratory workshop on Effective models for low-dimensional strongly correlated systems, Peyresq (France), 12-16 September 2005.
    Editors G. G. Batrouni und D. Poilblanc, American Institute of Physics, Melville, New York, 2006.
    pdf , ps.gz
     
  • R. M. Noack and S. R. Manmana
    Diagonalization- and Numerical Renormalization-Group-Based Methods for Interacting Quantum Systems
    AIP Conf. Proc. 789, 93-163 (2005). (Lecture notes on numerically exact methods);
    Lectures on the Physics of Highly Correlated Electron Systems IX:
    Ninth Training Course in the Physics of Correlated Electron Systems and High-Tc Superconductors , Salerno (Italy), 4-15 October 2004.
    Editors A. Avella und F. Mancini, American Institute of Physics, Melville, New York, 2005.
    pdf , ps.gz , cond-mat/0510321
     
  • M. Rigol, S. R. Manmana, A. Muramatsu, R. T. Scalettar, R. R. P. Singh, and S. Wessel
    Comment on "Novel Superfluidity in a Trapped Gas of Fermi Atoms with Repulsive Interaction Loaded on an Optical Lattice"
    Phys. Rev. Lett. 95, 218901 (2005) ,cond-mat/0502599
     
  • S. R. Manmana, A. Muramatsu, R. M. Noack
    Time evolution of one-dimensional Quantum Many Body Systems
    AIP Conf. Proc. 789, 269-278 (2005).
    Lectures on the Physics of Highly Correlated Electron Systems IX:
    Ninth Training Course in the Physics of Correlated Electron Systems and High-Tc Superconductors , Salerno (Italy), 4-15 October 2004.
    Editors A. Avella und F. Mancini, American Institute of Physics, Melville, New York, 2005.
    pdf , ps.gz , cond-mat/0502396
     
  • F. Alet, et al. (The ALPS Collaboration)
    The ALPS project: open source software for strongly correlated systems
    J. Phys. Soc. Jpn. Suppl. 74, 30 (2005), cond-mat/0410407.
     
  • S. R. Manmana, V. Meden, R. M. Noack, K. Schönhammer
    Quantum critical behavior of the one-dimensional ionic Hubbard model
    Phys. Rev. B 70, 155115 (2004), cond-mat/0307741 (color).


  • Theses:

    Habilitation Thesis (cumulative, pdf with links to the publications):
  • S. R. Manmana
    Quantum Magnetism, Nonequilibrium Dynamics and Quantum Simulation of Correlated Quantum Systems (pdf)
    Institut für Theoretische Physik, Georg-August-Universität Göttingen (2014).


  • Ph.D. Thesis:
  • S. R. Manmana
    Nonequilibrium Dynamics of Strongly Correlated Quantum Systems (pdf)
    Institute for Theoretical Physics III, Universität Stuttgart and Fachbereich Physik, Philipps-Universität Marburg(2006).


  • Diploma Thesis (german):
  • S. R. Manmana
    Vom Bandisolator zum Mott-Hubbard Isolator in einer Raumdimension
    Institut für Theoretische Physik, Georg-August-Universität Göttingen (2002).