A nonlinear journey from structural phase transitions to quantum annealing

Author:

Thudiyangal Mithun1ORCID,Kevrekidis Panayotis G.2ORCID,Saxena Avadh3ORCID,Bishop Alan R.3

Affiliation:

1. Department of Atomic and Molecular Physics, Manipal Academy of Higher Education 1 , Manipal 576 104, India

2. Department of Mathematics and Statistics, University of Massachusetts, Amherst 2 , Amherst, Massachusetts 01003-4515, USA

3. Center for Nonlinear Studies and Theoretical Division, Los Alamos National Laboratory 3 , Los Alamos, New Mexico 87545, USA

Abstract

Motivated by an exact mapping between equilibrium properties of a one-dimensional chain of quantum Ising spins in a transverse field (the transverse field Ising (TFI) model) and a two-dimensional classical array of particles in double-well potentials (the “ϕ4 model”) with weak inter-chain coupling, we explore connections between the driven variants of the two systems. We argue that coupling between the fundamental topological solitary waves in the form of kinks between neighboring chains in the classical ϕ4 system is the analog of the competing effect of the transverse field on spin flips in the quantum TFI model. As an example application, we mimic simplified measurement protocols in a closed quantum model system by studying the classical ϕ4 model subjected to periodic perturbations. This reveals memory/loss of memory and coherence/decoherence regimes, whose quantum analogs are essential in annealing phenomena. In particular, we examine regimes where the topological excitations control the thermal equilibration following perturbations. This paves the way for further explorations of the analogy between lower-dimensional linear quantum and higher-dimensional classical nonlinear systems.

Funder

Los Alamos National Laboratory

National Science Foundation

Publisher

AIP Publishing

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