Recurrence plots of two-site correlations in the quenched 1D transverse-field Ising model transition from periodic to multiscale structures across the ferromagnetic-to-paramagnetic transition, and recurrence quantifiers recover the critical field strength in an unsupervised manner.
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A disorder marker derived from central moments of disorder distributions classifies quantum probes and exhibits quadratic dependence on weak identical disorder strength, enabling estimation of maximum tolerable disorder directly from the clean probe Hamiltonian and initial state.
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Recurrence analysis of quantum many-body dynamics
Recurrence plots of two-site correlations in the quenched 1D transverse-field Ising model transition from periodic to multiscale structures across the ferromagnetic-to-paramagnetic transition, and recurrence quantifiers recover the critical field strength in an unsupervised manner.
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Robust quantum metrology using disordered probes
A disorder marker derived from central moments of disorder distributions classifies quantum probes and exhibits quadratic dependence on weak identical disorder strength, enabling estimation of maximum tolerable disorder directly from the clean probe Hamiltonian and initial state.