Arnoldi coefficients approach unity exponentially in heating phases of driven CFTs but oscillate in non-heating phases; lattice realizations show distinct spectral and graph signatures despite similar CFT Krylov growth.
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Stroboscopic Floquet mapping of Anderson and Aubry-André dynamics yields operator Krylov signatures that distinguish localized, delocalized, and critical regimes via distributions, wavefronts, and power spectra.
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Krylov Complexity in Periodically Driven CFTs and Critical Fermions
Arnoldi coefficients approach unity exponentially in heating phases of driven CFTs but oscillate in non-heating phases; lattice realizations show distinct spectral and graph signatures despite similar CFT Krylov growth.
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Anderson Localization: A Floquet operator Krylov space perspective
Stroboscopic Floquet mapping of Anderson and Aubry-André dynamics yields operator Krylov signatures that distinguish localized, delocalized, and critical regimes via distributions, wavefronts, and power spectra.