TY - JOUR
T1 - A Quantum Monte Carlo Method and Its Applications to Multi-Orbital Hubbard Models
AU - Motome, Yukitoshi
AU - Imada, Masatoshi
PY - 1997/7
Y1 - 1997/7
N2 - We present a framework of an auxiliary field quantum Monte Carlo (QMC) method for multi-orbital Hubbard models. Our formulation can be applied to a Hamiltonian which includes terms for on-site Coulomb interaction for both intra- and inter-orbitals, intra-site exchange interaction and energy differences between orbitals. Based on our framework, we point out possible ways to investigate various phase transitions such as metal-insulator, magnetic and orbital order-disorder transitions without the minus sign problem. As an application, a two-band model is investigated by the projection QMC method and the ground state properties of this model are presented.
AB - We present a framework of an auxiliary field quantum Monte Carlo (QMC) method for multi-orbital Hubbard models. Our formulation can be applied to a Hamiltonian which includes terms for on-site Coulomb interaction for both intra- and inter-orbitals, intra-site exchange interaction and energy differences between orbitals. Based on our framework, we point out possible ways to investigate various phase transitions such as metal-insulator, magnetic and orbital order-disorder transitions without the minus sign problem. As an application, a two-band model is investigated by the projection QMC method and the ground state properties of this model are presented.
KW - Auxiliary field quantum Monte Carlo
KW - Magnetic ordering
KW - Metal-insulator transition
KW - Minus sign problem
KW - Multi-orbital Hubbard model
KW - Orbital ordering
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U2 - 10.1143/JPSJ.66.1872
DO - 10.1143/JPSJ.66.1872
M3 - Article
AN - SCOPUS:0031504547
SN - 0031-9015
VL - 66
SP - 1872
EP - 1875
JO - journal of the physical society of japan
JF - journal of the physical society of japan
IS - 7
ER -