Dynamical response of quantum spin-glass models at T = 0
A new numerical technique for the study of disordered systems is introduced. The technique avoids the replica trick. It is demonstrated that the technique is a very accurate and general technique for the study of quantum spin disordered systems.
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Acceso en línea: | https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00319007_v86_n22_p5172_Arrachea http://hdl.handle.net/20.500.12110/paper_00319007_v86_n22_p5172_Arrachea |
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paper:paper_00319007_v86_n22_p5172_Arrachea2023-06-08T14:58:33Z Dynamical response of quantum spin-glass models at T = 0 Rozenberg, Marcelo Javier Glass Ground state Hamiltonians Magnetic field effects Mathematical models Molecular dynamics Paramagnetism Phase equilibria Probability density function Random processes Thermodynamic properties Diagonalization techniques Heisenberg model Ising model Low lying excitations Quantum random magnets Quantum spin glass models Quantum theory A new numerical technique for the study of disordered systems is introduced. The technique avoids the replica trick. It is demonstrated that the technique is a very accurate and general technique for the study of quantum spin disordered systems. Fil:Rozenberg, M.J. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. 2001 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00319007_v86_n22_p5172_Arrachea http://hdl.handle.net/20.500.12110/paper_00319007_v86_n22_p5172_Arrachea |
institution |
Universidad de Buenos Aires |
institution_str |
I-28 |
repository_str |
R-134 |
collection |
Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA) |
topic |
Glass Ground state Hamiltonians Magnetic field effects Mathematical models Molecular dynamics Paramagnetism Phase equilibria Probability density function Random processes Thermodynamic properties Diagonalization techniques Heisenberg model Ising model Low lying excitations Quantum random magnets Quantum spin glass models Quantum theory |
spellingShingle |
Glass Ground state Hamiltonians Magnetic field effects Mathematical models Molecular dynamics Paramagnetism Phase equilibria Probability density function Random processes Thermodynamic properties Diagonalization techniques Heisenberg model Ising model Low lying excitations Quantum random magnets Quantum spin glass models Quantum theory Rozenberg, Marcelo Javier Dynamical response of quantum spin-glass models at T = 0 |
topic_facet |
Glass Ground state Hamiltonians Magnetic field effects Mathematical models Molecular dynamics Paramagnetism Phase equilibria Probability density function Random processes Thermodynamic properties Diagonalization techniques Heisenberg model Ising model Low lying excitations Quantum random magnets Quantum spin glass models Quantum theory |
description |
A new numerical technique for the study of disordered systems is introduced. The technique avoids the replica trick. It is demonstrated that the technique is a very accurate and general technique for the study of quantum spin disordered systems. |
author |
Rozenberg, Marcelo Javier |
author_facet |
Rozenberg, Marcelo Javier |
author_sort |
Rozenberg, Marcelo Javier |
title |
Dynamical response of quantum spin-glass models at T = 0 |
title_short |
Dynamical response of quantum spin-glass models at T = 0 |
title_full |
Dynamical response of quantum spin-glass models at T = 0 |
title_fullStr |
Dynamical response of quantum spin-glass models at T = 0 |
title_full_unstemmed |
Dynamical response of quantum spin-glass models at T = 0 |
title_sort |
dynamical response of quantum spin-glass models at t = 0 |
publishDate |
2001 |
url |
https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00319007_v86_n22_p5172_Arrachea http://hdl.handle.net/20.500.12110/paper_00319007_v86_n22_p5172_Arrachea |
work_keys_str_mv |
AT rozenbergmarcelojavier dynamicalresponseofquantumspinglassmodelsatt0 |
_version_ |
1768545133968490496 |