We prove that for quantum lattice systems in d <= 2 dimensions the addition of quenched disorder rounds any first order phase transition in the corresponding conjugate order parameter, both at positive temperatures and at T = 0. For systems with continuous symmetry the statement extends up to d <= 4 dimensions. This establishes for quantum systems the existence of the Imry-Ma phenomenon which for classical systems was proven by Aizenman and Wehr. The extension of the proof to quantum systems is achieved by carrying out the analysis at the level of thermodynamic quantities rather than equilibrium states. (C) 2012 American Institute of Physics.
Aizenman, M., Greenblatt, R.l., Lebowitz, J.l. (2012). Proof of rounding by quenched disorder of first order transitions in low-dimensional quantum systems. JOURNAL OF MATHEMATICAL PHYSICS, 53(2) [10.1063/1.3679069].
Proof of rounding by quenched disorder of first order transitions in low-dimensional quantum systems
Rafael L. Greenblatt;
2012-01-01
Abstract
We prove that for quantum lattice systems in d <= 2 dimensions the addition of quenched disorder rounds any first order phase transition in the corresponding conjugate order parameter, both at positive temperatures and at T = 0. For systems with continuous symmetry the statement extends up to d <= 4 dimensions. This establishes for quantum systems the existence of the Imry-Ma phenomenon which for classical systems was proven by Aizenman and Wehr. The extension of the proof to quantum systems is achieved by carrying out the analysis at the level of thermodynamic quantities rather than equilibrium states. (C) 2012 American Institute of Physics.File | Dimensione | Formato | |
---|---|---|---|
5 Proof of rounding 2012.pdf
solo utenti autorizzati
Tipologia:
Versione Editoriale (PDF)
Licenza:
Copyright dell'editore
Dimensione
217.55 kB
Formato
Adobe PDF
|
217.55 kB | Adobe PDF | Visualizza/Apri Richiedi una copia |
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.