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cc-by-nc-nd (c) Majumdar, Avinaba, 2026
Si us plau utilitzeu sempre aquest identificador per citar o enllaçar aquest document: https://hdl.handle.net/2445/231724

Entropic Spectroscopy of Spatiotemporal Replica Defects in (1 + 1)D Quantum Ising Dynamics

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Generalised temporal entropies extend entanglement-based diagnostics from spatial subsystems to cuts through real-time quantum evolution. This thesis develops a spatiotemporal Rényi-2 construction that combines a crossed temporal replica geometry with spatial SWAP readouts, and applies it to the finite open one-dimensional quantum Ising chain. A general Boolean/Möbius framework organises replica-defect geometries, while the selected protocol is formulated as a crossed-replica spacetime tensor network. On the integrable transverse-field line h = 0, an exact Gaussian–Pfaffian evaluator is constructed and benchmarked against DMRG/TEBD; the same protocol is then studied at h = 0.5 with TEBD. At g = 0.5, 1.0, 1.5, the integrable entropy dynamics show phase- and geometry-dependent real-space structure within an exactly known ballistic envelope, and site-resolved Fourier analysis resolves the freefermion energy-difference and two-quasiparticle continua. Breaking integrability reorganises these spectra qualitatively: g = 0.5 exhibits confinement-scale localisation and mesonic structure, g = 1.0 develops a finite lowest branch consistent with the lightest magnetic-Ising E8 scale, and g = 1.5 reveals a mobile interacting branch with two-excitation kinematic structure. Complementary symmetric two-region Rényi-2 mutual-information diagnostics are also evaluated for disconnected spatial supports. In the mobile mixed-field cases, fixed local entropies remain bounded and oscillatory over the accessible T = 8 window while their spatial support continues to expand. These results establish spatiotemporal entropy and entropic spectroscopy as controlled probes of locality, integrability breaking, interacting spectral organisation, and dynamical complexity

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Màster Oficial de Ciència i Tecnologia Quàntiques / Quantum Science and Technology, Facultat de Física, Universitat de Barcelona. Curs: 2025-2026. Tutors: Aleix Bou-Comas, Luca Tagliacozzo

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MAJUMDAR, Avinaba. Entropic Spectroscopy of Spatiotemporal Replica Defects in (1 + 1)D Quantum Ising Dynamics. [consulted: 28 of September of 2026]. Available at: https://hdl.handle.net/2445/231724

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