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Instability of subdiffusive spin dynamics in strongly disordered Hubbard chain

ORAL

Abstract

We study spin transport in a Hubbard chain with a strong, random, on-site potential and with spin-dependent hopping integrals tσ. For the SU(2) symmetric case t = t, such a model exhibits only partial many-body localization with localized charge and (delocalized) subdiffusive spin excitations [1,2]. In our work [3], we demonstrate that breaking the SU(2) symmetry by even weak spin asymmetry, tt, localizes spins and restores full many-body localization. To this end, we derive an effective spin model where the spin subdiffusion is shown to be destroyed by arbitrarily weak tt. Instability of the spin subdiffusion originates from an interplay between random effective fields and singularly distributed random exchange interactions.

[1] P. Prelovsek, O. S. Barisic, and M. Znidaric, Phys. Rev. B 94, 241104(R) (2016).
[2] M. Kozarzewski, P. Prelovsek, and M. Mierzejewski, Phys. Rev. Lett. 120, 246602 (2018).
[3] M. Sroda, P. Prelovsek, and M. Mierzejewski, Phys. Rev. B 99, 121110(R) (2019).

Presenters

  • Maksymilian Sroda

    Department of Theoretical Physics, Wroclaw University of Science and Technology

Authors

  • Maksymilian Sroda

    Department of Theoretical Physics, Wroclaw University of Science and Technology

  • Peter Prelovsek

    J. Stefan Institute

  • Marcin Mierzejewski

    Department of Theoretical Physics, Wroclaw University of Science and Technology