The spectral properties of the Heisenberg spin-1/2 chain with random fields are analyzed in light of recent works on the renormalization-group flow of the Anderson model in infinite dimension. We reconstruct the β function of the order parameter from the numerical data, and observe that it may not admit a one-parameter scaling form and a simple Wilson-Fisher fixed point. Rather, it appears to be more compatible with a two parameter, Berezinskii–Kosterlitz-Thouless-like flow with a line of fixed points (the many-body localized phase) terminating at the localization transition critical point. We argue that this renormalization group framework provides a more coherent and intuitive explanation of numerical data, up to the system sizes available with the present technology.

Renormalization group analysis of the many-body localization transition in the random-field XXZ chain / Niedda, J., Testasecca, G.B., Magnifico, G., Balducci, F., Vanoni, C., Scardicchio, A.. - In: PHYSICAL REVIEW. B. - ISSN 2469-9950. - 112:14(2025), pp. 1-14. [10.1103/gcwf-jdlr]

Renormalization group analysis of the many-body localization transition in the random-field XXZ chain

Testasecca, Giacomo Bracci;Magnifico, Giuseppe;Balducci, Federico;Vanoni, Carlo;Scardicchio, Antonello
2025-01-01

Abstract

The spectral properties of the Heisenberg spin-1/2 chain with random fields are analyzed in light of recent works on the renormalization-group flow of the Anderson model in infinite dimension. We reconstruct the β function of the order parameter from the numerical data, and observe that it may not admit a one-parameter scaling form and a simple Wilson-Fisher fixed point. Rather, it appears to be more compatible with a two parameter, Berezinskii–Kosterlitz-Thouless-like flow with a line of fixed points (the many-body localized phase) terminating at the localization transition critical point. We argue that this renormalization group framework provides a more coherent and intuitive explanation of numerical data, up to the system sizes available with the present technology.
2025
112
14
1
14
10.1103/gcwf-jdlr
https://arxiv.org/abs/2410.12430
Niedda, Jacopo; Testasecca, Giacomo Bracci; Magnifico, Giuseppe; Balducci, Federico; Vanoni, Carlo; Scardicchio, Antonello
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11767/153231
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