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Most of our publications can be accessed freely via the arXiv preprint server.
Preprints
Persistent Haldane Phase in Carbon Tetris Chains
A. Abdelwahab, C. Karrasch, R. Rausch
arXiv:2412.08252
Investigating Stark MBL with Continuous Unitary Transformation Flows
J. Herre, Q. Liu, R. Rausch, C. Karrasch, D. M. Kennes
arXiv:2411.14527
Atacamite Cu2Cl(OH)3 in High Magnetic Fields: Quantum Criticality and Dimensional Reduction of a Sawtooth-Chain Compound
L. Heinze, T. Kotte, R. Rausch, A. Demuer, S. Luther, R. Feyerherm, A. A. L. N. Ammerlaan, U. Zeitler, D. I. Gorbunov, M. Uhlarz, K. C. Rule, A. U. B. Wolter, H. Kühne, J. Wosnitza, C. Karrasch, S. Süllow
arXiv:2410.01947
The non-collinear phase of the antiferromagnetic sawtooth chain
R. Rausch, C. Karrasch
arXiv:2402.05759
The low-spin ground state of the giant Mn wheels
R. Rausch, C. Karrasch
arXiv:2401.07552
Itinerant Magnetism in the Triangular Lattice Hubbard Model at Half-doping: Application to Twisted Transition-Metal Dichalcogenides
Y. He, R. Rausch, M. Peschke, C. Karrasch, P. Corboz, N. Bultinck, S. A. Parameswaran
arXiv:2311.10146
2024
[79 Density matrix renormalization group study of the interacting Kitaev chain with quasi-periodic disorder
K. S. C. Decker, C. Karrasch
Eur. Phys. J. B 97, 115 (2024)
[78] Terminable Transitions in a Topological Fermionic Ladder
Y. He, D. M. Kennes, C. Karrasch, R. Rausch
Phys. Rev. Lett. 132, 136501 (2024)
[77] Matrix-product state approach to the generalized nuclear pairing Hamiltonian
R. Rausch, C. Plorin, M. Peschke, C. Karrasch
Annalen der Physik 536, 2300436 (2024)
2023
[76] Reviving product states in the disordered Heisenberg chain
H. Wilming, T. J. Osborne, K. S. C. Decker, C. Karrasch
Nature Communications 14, 5847 (2023)
[75] Dynamically generated quadrupole polarization using Floquet adiabatic evolution
G. Camacho, C. Karrasch, R. Rausch
Phys. Rev. Research 5, 023015 (2023)
[74] Quantum spin spiral ground state of the ferrimagnetic sawtooth chain
R. Rausch, M. Peschke, C. Plorin, J. Schnack, C. Karrasch
SciPost Phys. 14, 052 (2023)
[73] Minimal one-dimensional model of bad metal behavior from fast particle-hole scattering
Y. Wang, R. Rausch, C. Karrasch, J. E. Moore
Phys. Rev. B 107, L100301 (2023)
2022
[72] Disorder effects in the Z3 Fock parafermion chain
G. Camacho, J. Vahedi, D. Schuricht, C. Karrasch
Phys. Rev. B 106, 235132 (2022)
[71] Review of recent developments of the functional renormalization group for systems out of equilibrium
G. Camacho, C. Klöckner, D. M. Kennes, C. Karrasch
Eur. Phys. J. B 95, 195 (2022)
[70] Many-body localization and the area law in two dimensions
K. S. C. Decker, D. M. Kennes, C. Karrasch
Phys. Rev. B 106, L180201 (2022)
[69] Quantum Floquet engineering with an exactly solvable tight-binding chain in a cavity
C. J. Eckhardt, G. Passetti, M. Othman, C. Karrasch, F. Cavaliere, M. A. Sentef, D. M. Kennes
Communications Physics 5, 122 (2022)
[68] Magnetic properties of a capped kagome molecule with 60 quantum spins
R. Rausch, M. Peschke, C. Plorin, C. Karrasch
SciPost Phys. 12, 143 (2022)
2021
[67] Finite-temperature transport in one-dimensional quantum lattice models
B. Bertini, F. Heidrich-Meisner, C. Karrasch, T. Prosen, R. Steinigeweg, M. Znidaric
Rev. Mod. Phys. 93, 025003 (2021)
2020
[66] Second-order functional renormalization group approach to quantum wires out of equilibrium
C. Klöckner, D. M. Kennes, C. Karrasch
Phys. Rev. B 102, 235113 (2020)
[65] Nonequilibrium properties of Berezinskii-Kosterlitz-Thouless phase transitions
C. Klöckner, C. Karrasch, D. M. Kennes
Phys. Rev. Lett. 125, 147601 (2020)
[64] A molecular shift register made using tunable charge patterns in one-dimensional molecular arrays on graphene
H.-Z. Tsai, J. Lischner, A. A. Omrani, F. Liou, A. S. Aikawa, C. Karrasch, S. Wickenburg, A. Riss, K. C. Natividad, J. Chen, W.-W. Choi, K. Watanabe, T. Taniguchi, C. Su, S. G. Louie, A. Zettl, J. Lu, M. F. Crommie
Nature Electronics 3, 598 (2020)
[63] Phases of translation-invariant systems out of equilibrium: Iterative Green's function techniques and renormalization group approaches
C. Klöckner, D. M. Kennes, C. Karrasch
New J. Phys. 22, 083039 (2020)
[62] Universality classes of spin transport in one-dimensional isotropic magnets: the onset of logarithmic anomalies
J. De Nardis, M. Medenjak, C. Karrasch, E. Ilievski
Phys. Rev. Lett. 124, 210605 (2020)
[61] Superdiffusive transport of energy in one-dimensional metals
V. B. Bulchandani, C. Karrasch, J. E. Moore
Proceedings of the National Academy of Sciences 117, 12713 (2020)
[60] Energy transport between critical one-dimensional systems with different central charges
S. Fischer, C. Karrasch, D. Schuricht, L. Fritz
Phys. Rev. B 101, 205146 (2020)
[59] Floquet engineering topological many-body localized systems
K. S. C. Decker, C. Karrasch, J. Eisert, D. M. Kennes
Phys. Rev. Lett. 124, 190601 (2020)
[58] Loschmidt-amplitude wave function spectroscopy and the physics of dynamically driven phase transitions
D. M. Kennes, C. Karrasch, A. J. Millis
Phys. Rev. B 101, 081106(R) (2020)
[57] Entanglement and spectra in topological many-body localized phases
K. S. C. Decker, D. M. Kennes, J. Eisert, C. Karrasch
Phys. Rev. B 101, 014208 (2020)
2019
[56] Anomalous spin diffusion in one-dimensional antiferromagnets
J. De Nardis, M. Medenjak, C. Karrasch, E. Ilievski
Phys. Rev. Lett. 123, 186601 (2019)
[55] Light-induced d-wave superconductivity through Floquet-engineered Fermi surfaces in cuprates
D. M. Kennes, M. Claassen, M. Sentef, C. Karrasch
Phys. Rev. B 100, 075115 (2019)
[54] Subdiffusive front scaling in interacting integrable models
V. B. Bulchandani, C. Karrasch
Phys. Rev. B 99, 121410(R) (2019)
2018
[53] Strong correlations and d+id superconductivity in twisted bilayer graphene
D. M. Kennes, J. Lischner, C. Karrasch
Phys. Rev. B 98, 241407(R) (2018)
[52] Topological invariants for the Haldane phase of interacting Su-Schrieffer-Heeger chains: Functional renormalization-group approach
B. Sbierski, C. Karrasch
Phys. Rev. B 98, 165101 (2018)
[51] Detecting phases in one-dimensional many-fermion systems with the functional renormalization group
L. Markhof, B. Sbierski, V, Meden, C. Karrasch
Phys. Rev. B 97, 235126 (2018)
[50] Controlling dynamical quantum phase transitions
D. M. Kennes, D. Schuricht, C. Karrasch
Phys. Rev. B 97, 184302 (2018)
[49] Exploring excited eigenstates of many-body systems using the functional renormalization group
C. Klöckner, D. M. Kennes, C. Karrasch
Phys. Rev. B 97, 195121 (2018)
[48] Many-body localization of spinless fermions with attractive interactions in one dimension
S. Lin, B. Sbierski, F. Dorfner, C. Karrasch, F. Heidrich-Meisner
SciPost Phys. 4, 002 (2018)
[47] Bethe-Boltzmann hydrodynamics and spin transport in the XXZ chain
V. B. Bulchandani, R. Vasseur, C. Karrasch, J. E. Moore
Phys. Rev. B 97, 045407 (2018)
2017
[46] Second-order functional renormalization group approach to one-dimensional systems in real and momentum space
B. Sbierski, C. Karrasch
Phys. Rev. B 96, 235122 (2017)
[45] Solvable hydrodynamics of quantum integrable systems
V. B. Bulchandani, R. Vasseur, C. Karrasch, J. E. Moore
Phys. Rev. Lett. 119, 220604 (2017)
[44] Transport in quasiperiodic interacting systems: from superdiffusion to subdiffusion
Y. Bar Lev, D. M. Kennes, C. Klöckner, D. Reichman, C. Karrasch
Eur. Phys. Lett. 119, 37003 (2017)
[43] Lower bounding diffusion constant by the curvature of Drude weight
M. Medenjak, C. Karrasch, T. Prosen
Phys. Rev. Lett. 119, 080602 (2017)
[42] Quantitative analytical theory for disordered nodal points
B. Sbierski, K. Madsen, P. Brouwer, C. Karrasch
Phys. Rev. B 96, 064203 (2017); Erratum Phys. Rev. B 97, 139903 (2018)
[41] Nonequilibrium thermal transport and vaccum expansion in the Hubbard model
C. Karrasch
Phys. Rev. B 95, 115148 (2017)
[40] Hubbard-to-Heisenberg crossover (and efficient computation) of Drude weights at low temperatures
C. Karrasch
New J. Phys. 19, 033027 (2017)
[39] Dynamical quantum phase transitions in the quantum Potts chain
C. Karrasch, D. Schuricht
Phys. Rev. B 95, 075143 (2017)
[38] Proposal for measuring the finite-temperature Drude weight of integrable systems
C. Karrasch, T. Prosen, F. Heidrich-Meisner
Phys. Rev. B 95, 060406(R) (2017)
[37] Small quenches and thermalization
D. M. Kennes, J. C. Pommerening, J. Diekmann, C. Karrasch, V. Meden
Phys. Rev. B 95, 035147 (2017)
2016
[36] Tuning charge and correlation effects for a single molecule on a graphene device
S. Wickenburg, J. Lu, J. Lischner, H.-Z. Tsai, A. A. Omrani, A. Riss, C. Karrasch, A. Bradley, H. S. Jung, R. Khajeh, D. Wong, K. Watanabe, T. Taniguchi, A. Zettl, A. H. Castro Neto, S. G. Louie, M. F. Crommie
Nature Communications 7, 13553 (2016)
[35] Entanglement scaling of excited states in large one-dimensional many-body localized systems
D. M. Kennes, C. Karrasch
Phys. Rev. B 93, 245129 (2016)
[34] Thermal conductivity of the one-dimensional Fermi-Hubbard model
C. Karrasch, D. M. Kennes, F. Heidrich-Meisner
Phys. Rev. Lett. 117, 116401 (2016)
[33] Extending the range of real time density matrix renormalization group simulations
D. M. Kennes, C. Karrasch
Comp. Phys. Comm. 200, 37 (2016)
2015
[32] Expansion potentials for exact far-from-equilibrium spreading of particles and energy
R. Vasseur, C. Karrasch, J. E. Moore
Phys. Rev. Lett. 115, 267201 (2015); Publisher's Note Phys. Rev. Lett. 117, 149902 (2016)
[31] Approaching many-body localization from disordered Luttinger liquids via the functional renormalization group
C. Karrasch, J. E. Moore
Phys. Rev. B 92, 115108 (2015)
[30] Spin and thermal conductivity of quantum spin chains and ladders
C. Karrasch, D. M. Kennes, F. Heidrich-Meisner
Phys. Rev. B 91, 115130 (2015)
[29] Low temperature dynamics of nonlinear Luttinger liquids
C. Karrasch, R. G. Pereira, J. Sirker
New J. Phys. 17, 103003 (2015)
[28] Time-evolving a matrix product state with long-ranged interactions
M. P. Zaletel, R. S. K. Mong, C. Karrasch, J. E. Moore, F. Pollmann
Phys. Rev. B 91, 165112 (2015)
2014
[27] Transport properties of the one-dimensional Hubbard model at finite temperature
C. Karrasch, D. M. Kennes, J. E. Moore
Phys. Rev. B 90, 155104 (2014)
[26] Dynamical quantum phase transitions in the axial next-nearest-neighbour Ising chain
J. Kriel, C. Karrasch, S. Kehrein
Phys. Rev. B 90, 125106 (2014)
[25] Real-time and real-space spin and energy dynamics in one-dimensional spin-1/2 systems induced by local quantum quenches at finite temperatures
C. Karrasch, J. E. Moore, F. Heidrich-Meisner
Phys. Rev. B 89, 075139 (2014)
2013
[24] Reducing the numerical effort of finite-temperature density matrix renormalization group calculations
C. Karrasch, J. H. Bardarson, J. E. Moore
New J. Phys. 15, 083031 (2013)
[23] Dynamical phase transitions after quenches in nonintegrable models
C. Karrasch, D. Schuricht
Phys. Rev. B 87, 195104 (2013)
[22] Drude weight of the spin-1/2 XXZ chain: density matrix renormalization group versus exact diagonalization
C. Karrasch, J. Hauschild, S. Langer, F. Heidrich-Meisner
Phys. Rev. B 87, 245128 (2013)
[21] Scaling of electrical and thermal conductivities in an almost integrable chain
Y. Huang, C. Karrasch, J. E. Moore
Phys. Rev. B 88, 115126 (2013)
[20] Nonequilibrium thermal transport and its relation to linear response
C. Karrasch, R. Ilan, J. E. Moore
Phys. Rev. B 88, 195129 (2013)
2012
[19] Luttinger liquid physics from the infinite-system density matrix renormalization group
C. Karrasch, J. E. Moore
Phys. Rev. B 86, 155156 (2012)
[18] Luttinger-liquid universality in the time evolution after an interaction quench
C. Karrasch, J. Rentrop, D. Schuricht, V. Meden
Phys. Rev. Lett. 109, 126406 (2012)
[17] Understanding the Josephson current through a Kondo-correlated quantum dot
D. J. Luitz, F. F. Assaad, T. Novotny, C. Karrasch, V. Meden
Phys. Rev. Lett. 108, 227001 (2012)
[16] Renormalization group approach to time dependent transport through correlated quantum dots
D. M. Kennes, S. G. Jakobs, C. Karrasch, V. Meden
Phys. Rev. B 85, 085113 (2012)
[15] Finite-temperature dynamical density matrix renormalization group and the Drude weight of spin-1/2 chains
C. Karrasch, J. H. Bardarson, J. E. Moore
Phys. Rev. Lett. 108, 227206 (2012)
2011
[14] Supercurrent through a multilevel quantum dot close to singlet-triplet degeneracy
C. Karrasch, S. Andergassen, V. Meden
Phys. Rev. B 84, 134512 (2011)
[13] Probing electron-electron interaction in quantum Hall systems with scanning tunneling spectroscopy
S. Becker, C. Karrasch, T. Mashoff, M. Pratzer, M. Liebmann, V. Meden, M. Morgenstern
Phys. Rev. Lett. 106, 156805 (2011)
2010
[12] Finite-temperature linear conductance from the Matsubara Green's function without analytic continuation to the real axis
C. Karrasch, V. Meden, K. Schönhammer
Phys. Rev. B 82, 125114 (2010)
[11] Non-equilibrium current and relaxation dynamics of a charge-fluctuating quantum dot
C. Karrasch, S. Andergassen, M. Pletyukhov, D. Schuricht, L. Borda, V. Meden, H. Schoeller
Eur. Phys. Lett. 90, 30003 (2010)
[10] Functional renormalization group study of the interacting resonant level model in and out of equilibrium
C. Karrasch, M. Pletyukhov, L. Borda, V. Meden
Phys. Rev. B 81, 125122 (2010)
2009
[9] Tuning the Josephson current in carbon nanotubes with the Kondo effect
A. Eichler, R. Deblock, M. Weiss, C. Karrasch, V. Meden, C. Schönenberger, H. Bouchiat
Phys. Rev. B 79, 161407(R) (2009)
[8] Quantum criticality perspective on the charging of narrow quantum-dot levels
V. Kashcheyevs, C. Karrasch, T. Hecht, A. Weichselbaum, V. Meden, A. Schiller
Phys. Rev. Lett. 102, 136805 (2009)
[7] Supercurrent and multiple singlet-doublet phase transitions of a quantum dot Josephson junction inside an Aharonov-Bohm ring
C. Karrasch, V. Meden
Phys. Rev. B 79, 045110 (2009)
2008
[6] A finite-frequency functional renormalization group approach to the single impurity Anderson model
C. Karrasch, R. Hedden, R. Peters, Th. Pruschke, K. Schönhammer, V. Meden
J. Phys.: Condensed Matter 20, 345205 (2008)
[5] Josephson current through a single Anderson impurity coupled to BCS leads
C. Karrasch, A. Oguri, V. Meden
Phys. Rev. B 77, 024517 (2008)
2007
[4] A gentle introduction to the functional renormalization group: the Kondo effect in quantum dots
S. Andergassen, T. Enss, C. Karrasch, V. Meden
in Quantum Magnetism, edited by B. Barbara, Y. Imry, G. Sawatzky, and P.C.E. Stamp, Springer, New York, 2008
[3] Phase lapses in transmission through interacting two-level quantum dots
C. Karrasch, T. Hecht, A. Weichselbaum, J. von Delft, Y. Oreg, V. Meden
New J. Phys. 9, 123 (2007)
[2] Mesoscopic to universal crossover of the transmission phase of multilevel quantum dots
C. Karrasch, T. Hecht, A. Weichselbaum, Y. Oreg, J. von Delft, V. Meden
Phys. Rev. Lett. 98, 186802 (2007)
2006
[1] Functional renormalization group approach to transport through correlated quantum dots
C. Karrasch, T. Enss, V. Meden
Phys. Rev. B 73, 235337 (2006)