activity
20122024
most citedA Formulation of Lattice Gauge Theories for Quantum Simulations

209 citations · 546 across the 6 of their papers we have counts for

collaborators

6 papers

quant-ph202412 cited

Entanglement and confinement in lattice gauge theory tensor networks

Johannes Knaute, Matan Feuerstein, Erez Zohar

We develop a transfer operator approach for the calculation of Rényi entanglement entropies in arbitrary (i.e. Abelian and non-Abelian) pure lattice gauge theory projected entangle…

quant-ph201652 cited

Projected Entangled Pair States with non-Abelian gauge symmetries: an SU(2) study

Erez Zohar, Thorsten B. Wahl, Michele Burrello +1

Over the last years, Projected Entangled Pair States have demonstrated great power for the study of many body systems, as they naturally describe ground states of gapped many body…

quant-ph2016146 cited

Digital lattice gauge theories

Erez Zohar, Alessandro Farace, Benni Reznik +1

We propose a general scheme for a digital construction of lattice gauge theories with dynamical fermions. In this method, the four-body interactions arising in models with di…

quant-ph2016127 cited

Digital quantum simulation of lattice gauge theories with dynamical fermionic matter

Erez Zohar, Alessandro Farace, Benni Reznik +1

We propose a scheme for digital quantum simulation of lattice gauge theories with dynamical fermions. Using a layered optical lattice with ancilla atoms that can move and interact…

quant-ph2014209 cited

A Formulation of Lattice Gauge Theories for Quantum Simulations

Erez Zohar, Michele Burrello

We examine the Kogut-Susskind formulation of lattice gauge theories under the light of fermionic and bosonic degrees of freedom that provide a description useful to the development…

quant-ph2012

String tension and area-law probed using quantum superposition

Erez Zohar, Benni Reznik

We propose a method for measuring the string tension in gauge theories, by considering an interference effect of mesons, which is governed by a space-time area law, due to confinem…