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Entanglement Generation and Information Spreading in Weakly Monitored Quantum Circuits

ORAL

Abstract

We study the non-equilibrium dynamics in (1+1)D weakly monitored quantum circuits, focusing on the entanglement generation and information spreading. Due to the non-local nature of projective measurements, entanglement dynamics in monitored circuits is "faster" than the unitary ones in several ways. Specifically, we find that a pair of well-separated regions can build up nontrivial entanglement in a timescale l2/3­­­, sub-linear in their distance l; and initially local information can spread super-ballistically as t. By viewing the dynamics as a dynamical error correcting code, we find the code distance grows sub-linearly as t1/2 until saturation; and the input state's local information contained in size l is lost at a timescale l­­2. Some notions we developed to quantify information dynamics apply to more general monitored quantum processes and are of their own interest.

Presenters

  • Shengqi Sang

    Perimeter Inst for Theo Phys

Authors

  • Shengqi Sang

    Perimeter Inst for Theo Phys

  • Zhi Li

    Perimeter Inst for Theo Phys

  • Timothy Hsieh

    Perimeter Inst for Theo Phys

  • Beni Yoshida

    Perimeter Inst for Theo Phys