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[BOK][B] Density Matrix and Tensor Network Renormalization
T **ang - 2023 - books.google.com
Renormalization group theory of tensor network states provides a powerful tool for studying
quantum many-body problems and a new paradigm for understanding entangled structures …
quantum many-body problems and a new paradigm for understanding entangled structures …
New trends in density matrix renormalization
KA Hallberg - Advances in Physics, 2006 - Taylor & Francis
The density matrix renormalization group (DMRG) has become a powerful numerical
method that can be applied to low-dimensional strongly correlated fermionic and bosonic …
method that can be applied to low-dimensional strongly correlated fermionic and bosonic …
Exotic magnetic order in the orbital-selective Mott regime of multiorbital systems
J Rincón, A Moreo, G Alvarez, E Dagotto - Physical Review Letters, 2014 - APS
The orbital-selective Mott phase of multiorbital Hubbard models has been extensively
analyzed before using static and dynamical mean-field approximations. In parallel, the …
analyzed before using static and dynamical mean-field approximations. In parallel, the …
Novel magnetic block states in low-dimensional iron-based superconductors
Inelastic neutron scattering recently confirmed the theoretical prediction of a↑↑↓↓-
magnetic state along the legs of quasi-one-dimensional iron-based ladders in the orbital …
magnetic state along the legs of quasi-one-dimensional iron-based ladders in the orbital …
Spin, orbital and topological order in models of strongly correlated electrons
W Brzezicki - Journal of Physics: Condensed Matter, 2019 - iopscience.iop.org
Different types of order are discussed in the context of strongly correlated transition metal
oxides, involving pure compounds and and hybrids. Apart from standard, long-range spin …
oxides, involving pure compounds and and hybrids. Apart from standard, long-range spin …
Block–spiral magnetism: An exotic type of frustrated order
J Herbrych, J Heverhagen, G Alvarez… - Proceedings of the …, 2020 - pnas.org
Competing interactions in quantum materials induce exotic states of matter such as
frustrated magnets, an extensive field of research from both the theoretical and experimental …
frustrated magnets, an extensive field of research from both the theoretical and experimental …
Magnetic order and strongly correlated effects in the one-dimensional Ising-Kondo lattice
X Zhou, J Fan, S Jia - Physical Review B, 2024 - APS
We investigate the magnetic order and related strongly correlated effects in a one-
dimensional Ising-Kondo lattice with transverse field. This model is the anisotropic limit of …
dimensional Ising-Kondo lattice with transverse field. This model is the anisotropic limit of …
Spin-lattice order in one-dimensional conductors: Beyond the RKKY effect
We investigate magnetic order in a lattice of classical spins coupled to an isotropic gas of
one-dimensional conduction electrons via local exchange interactions. The frequently …
one-dimensional conduction electrons via local exchange interactions. The frequently …
Magnetic end states in a strongly interacting one-dimensional topological kondo insulator
AM Lobos, AO Dobry, V Galitski - Physical Review X, 2015 - APS
Topological Kondo insulators are strongly correlated materials where itinerant electrons
hybridize with localized spins, giving rise to a topologically nontrivial band structure. Here …
hybridize with localized spins, giving rise to a topologically nontrivial band structure. Here …
Symmetry-protected topological phase transition in one-dimensional Kondo lattice and its realization with ultracold atoms
M Nakagawa, N Kawakami - Physical Review B, 2017 - APS
We propose that ultracold alkaline-earth-like atoms confined in one-dimensional optical
lattice can realize a Kondo lattice model which hosts a symmetry-protected topological (SPT) …
lattice can realize a Kondo lattice model which hosts a symmetry-protected topological (SPT) …