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Non-Perturbative Many-Body Approach to the Hubbard Model and Single-Particle Pseudogap ,
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Antiferromagnetism and d-wave superconductivity in cuprates: A cluster dynamical mean-field theory ,
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Cellular Dynamical Mean Field Approach to Strongly Correlated Systems ,
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Absence of a Slater Transition in the Two-Dimensional Hubbard Model ,
S. Moukouri and M. Jarrell, · 2001
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Mott-Hubbard Metal-Insulator Transition and Optical Conductivity in High Dimensions ,
N. Blümer, · 2002
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Some consequences of the Luttinger theorem: The Luttinger surfaces in non-Fermi liquids and Mott insulators ,
I. Dzyaloshinskii, · 2003
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Cluster Dynamical Mean Field Analysis of the Mott Transition ,
O. Parcollet, G. Biroli and G. Kotliar, · 2004
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Mott transition and high-temperature crossovers at half-filling ,
A. Reymbaut, M. Boulay, L. Fratino, P. Sémon, W. Wu, G. Sordi and A. M. S. Tremblay, · 2004
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Antiferromagnetism and single-particle properties in the two-dimensional half-filled Hubbard model: A nonlinear sigma model approach ,
K. Borejsza and N. Dupuis, · 2004
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Fulfillment of Ward identities in the functional renormalization group approach ,
A. A. Katanin, · 2004
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Quantum cluster theories ,
T. Maier, M. Jarrell, T. Pruschke and M. H. Hettler, · 2005
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Dynamical Breakup of the Fermi Surface in a Doped Mott Insulator ,
M. Civelli, M. Capone, S. S. Kancharla, O. Parcollet and G. Kotliar, · 2005
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Continuous-time quantum Monte Carlo method for fermions ,
A. N. Rubtsov, V. V. Savkin and A. I. Lichtenstein, · 2005
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One-band tight-binding model parametrization of the high- T c {T}_{c} cuprates including the effect of k z {k}_{z} dispersion ,
R. S. Markiewicz, S. Sahrakorpi, M. Lindroos, H. Lin and A. Bansil, · 2005
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Interaction-Induced Adiabatic Cooling and Antiferromagnetism of Cold Fermions in Optical Lattices ,
F. Werner, O. Parcollet, A. Georges and S. R. Hassan, · 2005
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Evolution of the pseudogap from Fermi arcs to the nodal liquid ,
A. Kanigel, M. R. Norman, M. Randeria, U. Chatterjee, S. Souma, A. Kaminski, H. M. Fretwell, S. Rosenkranz, M. Shi, T. Sato, T. Takahashi, Z. Z. Li et al. , · 2006
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A cellular dynamical mean field theory approach to Mottness ,
T. D. Stanescu, M. Civelli, K. Haule and G. Kotliar, · 2006
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Pseudogap induced by short-range spin correlations in a doped Mott insulator ,
B. Kyung, S. S. Kancharla, D. Sénéchal, A.-M. S. Tremblay, M. Civelli and G. Kotliar, · 2006
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Interaction-induced adiabatic cooling for antiferromagnetism in optical lattices ,
A.-M. Daré, L. Raymond, G. Albinet and A.-M. S. Tremblay, · 2007
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Multisite versus multiorbital Coulomb correlations studied within finite-temperature exact diagonalization dynamical mean-field theory ,
A. Liebsch, H. Ishida and J. Merino, · 2008
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Cluster dynamical mean field theory of the mott transition ,
H. Park, K. Haule and G. Kotliar, · 2008
Cited alongside, same era.
Anomalous superconductivity and its competition with antiferromagnetism in doped Mott insulators ,
S. S. Kancharla, B. Kyung, D. Sénéchal, M. Civelli, M. Capone, G. Kotliar and A.-M. S. Tremblay, · 2008
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Finite Doping Signatures of the Mott Transition in the Two-Dimensional Hubbard Model ,
G. Sordi, K. Haule and A.-M. S. Tremblay, · 2010
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Continuous-time Monte Carlo methods for quantum impurity models ,
E. Gull, A. J. Millis, A. I. Lichtenstein, A. N. Rubtsov, M. Troyer and P. Werner, · 2011
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Real-space cluster dynamical mean-field theory: Center-focused extrapolation on the one- and two particle-levels ,
M. Klett, N. Wentzell, T. Schäfer, F. Šimkovic, O. Parcollet, S. Andergassen and P. Hansmann, · 2020
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Extended Crossover from a Fermi Liquid to a Quasiantiferromagnet in the Half-Filled 2D Hubbard Model ,
F. Šimkovic, J. P. F. LeBlanc, A. J. Kim, Y. Deng, N. V. Prokof’ev, B. V. Svistunov and E. Kozik, · 2020
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Nickelate superconductors—a renaissance of the one-band Hubbard model ,
M. Kitatani, L. Si, O. Janson, R. Arita, Z. Zhong and K. Held, · 2020
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Charge carrier drop at the onset of pseudogap behavior in the two-dimensional Hubbard model ,
P. M. Bonetti, J. Mitscherling, D. Vilardi and W. Metzner, · 2020
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The role of the self-energy in the functional renormalization group description of interacting Fermi systems ,
C. Hille, · 2020
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Cluster-size dependence in cellular dynamical mean-field theory ,
S. Sakai, G. Sangiovanni, M. Civelli, Y. Motome, K. Held and M. Imada, · 2012
Cited alongside, same era.
Energetics of superconductivity in the two-dimensional Hubbard model ,
E. Gull and A. J. Millis, · 2012
Cited alongside, same era.
Strong Coupling Superconductivity, Pseudogap, and Mott Transition ,
G. Sordi, P. Sémon, K. Haule and A.-M. S. Tremblay, · 2012
Cited alongside, same era.
Dynamical mean-field theory for correlated electrons ,
D. Vollhardt, · 2012
Cited alongside, same era.
First-Matsubara-frequency rule in a Fermi liquid. I. Fermionic self-energy ,
A. V. Chubukov and D. L. Maslov, · 2012
Cited alongside, same era.
Functional renormalization group approach to correlated fermion systems ,
W. Metzner, M. Salmhofer, C. Honerkamp, V. Meden and K. Schönhammer, · 2012
Cited alongside, same era.
Mott–Hubbard transition in V 2 O 3 revisited ,
P. Hansmann, A. Toschi, G. Sangiovanni, T. Saha-Dasgupta, S. Lupi, M. Marsi and K. Held, · 2013
Cited alongside, same era.
On the Phase Diagram of the Hubbard-Model in Real-Space Extensions of Dynamical Mean-Field Theory ,
M. D. M. Meixner, · 2021
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Tracking the Footprints of Spin Fluctuations: A MultiMethod, MultiMessenger Study of the Two-Dimensional Hubbard Model ,
T. Schäfer, N. Wentzell, F. Šimkovic, Y.-Y. He, C. Hille, M. Klett, C. J. Eckhardt, B. Arzhang, V. Harkov, F. Le Régent, A. Kirsch, Y. Wang et al. , · 2021
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Mott Insulating States with Competing Orders in the Triangular Lattice Hubbard Model ,
A. Wietek, R. Rossi, F. Šimkovic, M. Klett, P. Hansmann, M. Ferrero, E. M. Stoudenmire, T. Schäfer and A. Georges, · 2021
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How to read between the lines of electronic spectra: the diagnostics of fluctuations in strongly correlated electron systems ,
T. Schäfer and A. Toschi, · 2021
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The nonperturbative functional renormalization group and its applications ,
N. Dupuis, L. Canet, A. Eichhorn, W. Metzner, J. Pawlowski, M. Tissier and N. Wschebor, · 2021
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The Hubbard Model ,
D. P. Arovas, E. Berg, S. A. Kivelson and S. Raghu, · 2022
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The Hubbard Model: A Computational Perspective ,
M. Qin, T. Schäfer, S. Andergassen, P. Corboz and E. Gull, · 2022
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Investigation of the highly non-perturbative nature of the Mott-Hubbard metal insulator transition: Vertex divergences in the coexistence region ,
M. Pelz, · 2022
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Luttinger’s theorem in the presence of Luttinger surfaces ,
J. Skolimowski and M. Fabrizio, · 2022
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Origin and fate of the pseudogap in the doped Hubbard model ,
F. Šimkovic, R. Rossi, A. Georges and M. Ferrero, · 2022
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Magnetic correlations in infinite-layer nickelates: An experimental and theoretical multimethod study ,
R. A. Ortiz, P. Puphal, M. Klett, F. Hotz, R. K. Kremer, H. Trepka, M. Hemmida, H.-A. K. von Nidda, M. Isobe, R. Khasanov, H. Luetkens, P. Hansmann et al. , · 2022
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Magnetic Properties and Pseudogap Formation in Infinite-Layer Nickelates: Insights From the Single-Band Hubbard Model ,
M. Klett, P. Hansmann and T. Schäfer, · 2022
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SU(2) gauge theory of the pseudogap phase in the two-dimensional Hubbard model ,
P. M. Bonetti and W. Metzner, · 2022
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Dissertation: Long-range order, bosonic fluctuations, and pseudogap in strongly correlated electron systems ,
P. M. Bonetti, · 2022
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Explaining the pseudogap through damping and antidamping on the Fermi surface by imaginary spin scattering ,
F. Krien, P. Worm, P. Chalupa-Gantner, A. Toschi and K. Held, · 2022
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Stripes and spin-density waves in the doped two-dimensional Hubbard model: Ground state phase diagram ,
H. Xu, H. Shi, E. Vitali, M. Qin and S. Zhang, · 2022
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The phase diagram of the Hubbard model by Variational Auxiliary Field quantum Monte Carlo ,
S. Sorella, · 2022
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Intertwined spin, charge, and pair correlations in thetwo-dimensional Hubbard model in thethermodynamic limit ,
P. Mai, G. Balduzzi, S. Johnston and T. A. Maier, · 2022
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Fermi arcs from dynamical variational Monte Carlo ,
P. Rosenberg, D. Sénéchal, A.-M. S. Tremblay and M. Charlebois, · 2022
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Mott transition, widom line, and pseudogap in the half-filled triangular lattice hubbard model ,
P.-O. Downey, O. Gingras, J. Fournier, C.-D. Hébert, M. Charlebois and A.-M. S. Tremblay, · 2023
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Highly nonperturbative nature of the Mott metal-insulator transition: Two-particle vertex divergences in the coexistence region ,
M. Pelz, S. Adler, M. Reitner and A. Toschi, · 2023
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Criteria and analytical results for the pseudogap at the Van Hove point in two dimensions ,
Y. M. Vilk, · 2023
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Local and nonlocal electronic correlations at the metal-insulator transition in the Hubbard model in two dimensions ,
M. Chatzieleftheriou, S. Biermann and E. A. Stepanov, · 2023
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Emergent Properties of the Periodic Anderson Model: a High-Resolution, Real-Frequency Study of Heavy-Fermion Quantum Criticality ,
A. Gleis, S.-S. B. Lee, G. Kotliar and J. von Delft, · 2023
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Temperature Dependence of Spin and Charge Orders in the Doped Two-Dimensional Hubbard Model ,
B. Xiao, Y.-Y. He, A. Georges and S. Zhang, · 2023
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Applicability and limitations of cluster perturbation theory for Hubbard models ,
N. Enenkel, M. Garst and P. Schmitteckert, · 2023
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