Emergent spacetimes from Hermitian and non-Hermitian quantum dynamics
Abstract
We show that quantum dynamics of any systems with symmetry give rise to emergent Anti-de Sitter spacetimes in 2+1 dimensions (AdS). Using the continuous circuit depth, a quantum evolution is mapped to a trajectory in AdS. Whereas the time measured in laboratories becomes either the proper time or the proper distance, quench dynamics follow geodesics of AdS. Such a geometric approach provides a unified interpretation of a wide range of prototypical phenomena that appear disconnected. For instance, the light cone of AdS underlies expansions of unitary fermions released from harmonic traps, the onsite of parametric amplifications, and the exceptional points that represent the symmetry breaking in non-Hermitian systems. Our work provides a transparent means to optimize quantum controls by exploiting shortest paths in the emergent spacetimes. It also allows experimentalists to engineer emergent spacetimes and induce tunnelings between different AdS.
Keywords
Cite
@article{arxiv.2205.07429,
title = {Emergent spacetimes from Hermitian and non-Hermitian quantum dynamics},
author = {Chenwei Lv and Qi Zhou},
journal= {arXiv preprint arXiv:2205.07429},
year = {2023}
}
Comments
6+3 pages, 3 figures