Code repository for New J. Phys. 20, 043034 (2018) [arXiv:1708.06363]
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Updated
Sep 4, 2018 - Jupyter Notebook
Code repository for New J. Phys. 20, 043034 (2018) [arXiv:1708.06363]
Numerical simulations validating the observer entropy framework: demonstrating emergent thermodynamics from quantum information loss. Code reproduces monotonic entropy growth and temperature emergence for qubit-bath systems under Lindblad dynamics.
Undergraduate thesis presented to the undergraduate program in Computational Physics at the São Carlos Institute of Physics, University of São Paulo, as partial fulfillement of the requeriments for a Bachelor’s degree.
Rust simulations of extractable work (ergotropy) in finite quantum chains under coherent driving and dephasing, including reproducible N=3–7 and equal-input N=3 vs N=7 analyses.
numerical experiments for eigenstate thermalization hypothesis
Master’s thesis code: quantum heat engine simulations (GKLS/Lindblad), reproducible notebooks & plots.
Resource-Theoretical Unification of Mpemba Effects: Classical and Quantum
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