Time evolution with the DMRG algorithm: a generic implementation for strongly correlated electronic systems (2011)
- Authors:
- Autor USP: SILVA, LUIS GREGORIO GODOY DE VASCONCELLOS DIAS DA - IF
- Unidade: IF
- Assunto: FÍSICA COMPUTACIONAL
- Language: Inglês
- Imprenta:
-
ABNT
ALVAREZ, G; PONCE, E; DAGOTTO, E; SILVA, Luis G. G. V. Dias da. Time evolution with the DMRG algorithm: a generic implementation for strongly correlated electronic systems. [S.l: s.n.], 2011. -
APA
Alvarez, G., Ponce, E., Dagotto, E., & Silva, L. G. G. V. D. da. (2011). Time evolution with the DMRG algorithm: a generic implementation for strongly correlated electronic systems. São Paulo. -
NLM
Alvarez G, Ponce E, Dagotto E, Silva LGGVD da. Time evolution with the DMRG algorithm: a generic implementation for strongly correlated electronic systems. 2011 ; -
Vancouver
Alvarez G, Ponce E, Dagotto E, Silva LGGVD da. Time evolution with the DMRG algorithm: a generic implementation for strongly correlated electronic systems. 2011 ; - Coulomb interaction due to a vacancy in graphene
- Symmetry–protected coherent transport for diluted vacancies and adatoms in graphene
- Study of Kane-Mele-Hubbard ladders with DMRG-MPS
- Transport signatures of Kondo physics and quantum criticality in graphene with magnetic impurities
- Spin-polarized conductance in double quantum dots: interplay of kondo, zeeman, and interference effects
- Magnetic noise from charge traps in the Kondo regime
- Tunable spin-polarized edge transport in inverted quantum-well junctions
- Disorder-mediated Kondo effect in graphene
- Tunable spin-polarized edge transport in inverted quantum well junctions
- Gap oscillations and majorana bound states in magnetic chains on superconducting honeycomb lattices
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