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Information lattice approach to the metal-insulator transition

William Skoglund et al · American Physical Society · 2026

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Correlation functions and correlation lengths are frequently used to describe phase transitions in quantum systems, but they require an explicit choice of observables. The recently introduced information lattice instead provides an observable-independent way to identify where and at which scale information is contained in quantum lattice models. Here, we use it to study the difference between the metallic and insulating regimes of one-dimensional noninteracting tight-binding chains. We find that the information per scale follows a power law in metals at low temperature and that Friedel-like oscillations are visible in the information lattice. At high temperature or in insulators at low temperature, the information per scale decays exponentially. Thus, the information lattice is a useful tool for analyzing the metal-insulator transition.

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APA 7

al, W. S. E. (2026). Information lattice approach to the metal-insulator transition. https://doi.org/10.1103/2gvx-gp9g

MLA

al, William Skoglund et. "Information lattice approach to the metal-insulator transition." 2026. https://doi.org/10.1103/2gvx-gp9g.

Chicago

al, William Skoglund et. 2026. "Information lattice approach to the metal-insulator transition.". https://doi.org/10.1103/2gvx-gp9g.

Harvard

al, W. S. E. 2026, Information lattice approach to the metal-insulator transition, American Physical Society, available at: https://doi.org/10.1103/2gvx-gp9g [Accessed 9 Aug. 2026].

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Title
Information lattice approach to the metal-insulator transition
Author / contributors
William Skoglund et al
Publisher
American Physical Society
Publication year
2026
ISSN
2643-1564
ISSN
2643-1564
Language
English
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