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    Page Curve Like Entanglement Dynamics in Many-Body Quantum Systems: A Study of a Free Fermionic Model

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    Date
    2026-02
    Author
    Bhakta, Prosanto
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    Abstract
    This thesis investigates entanglement dynamics in open quantum many-body systems, focusing on a one-dimensional free-fermion model in which a finite system is coupled to a large environment. We study the model introduced in Ref. [1], which becomes exactly solvable in the weak-coupling limit. Using resonant-level-model factorization, we derive analytical expressions for the entanglement dynamics and validate them with numerical simulations based on the correlation matrix formalism. We show that the system exhibits Page-curve-like behavior: the entanglement entropy grows at early times, reaches a maximum at the Page time (proportional to system size), and then decreases at late times. In the appropriate scaling regime, data for different system sizes collapse onto a single curve when plotted against the emitted-particle fraction. These results provide an analytically controlled and numerically validated framework for understanding Page-curve dynamics in open free-fermion systems.
    URI
    https://ar.iub.edu.bd/handle/11348/1164
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    • Article [8]
    Publisher:
    IUB
    Type:
    Thesis
    Keywords:
    Quantum Physics, Quantum Entanglement, Page Curve, Numerical simulations, Correlation matrix formalism

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