activity
20142024
most citedQuantum simulation of the Schwinger model: A study of feasibility

119 citations · 235 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph20247 cited

Hybrid Oscillator-Qubit Quantum Processors: Simulating Fermions, Bosons, and Gauge Fields

Eleanor Crane, Kevin C. Smith, Teague Tomesh +9

We develop a hybrid oscillator-qubit processor framework for quantum simulation of strongly correlated fermions and bosons that avoids the boson-to-qubit mapping overhead encounter…

quant-ph2023

Simulating the flight gate assignment problem on a trapped ion quantum computer

Yahui Chai, Evgeny Epifanovsky, Karl Jansen +2

We study the flight gate assignment problem on IonQ's Aria trapped ion quantum computer using the variational quantum eigensolver. Utilizing the conditional value at risk as an agg…

quant-ph2023

A qubit-ADAPT Implementation for H Molecules using an Explicitly Correlated Basis

Hakon Volkmann, Raamamurthy Sathyanarayanan, Alejandro Saenz +2

With the recent advances in the development of devices capable of performing quantum computations, a growing interest in finding near-term applications has emerged in many areas of…

hep-lat2016109 cited

Density Induced Phase Transitions in the Schwinger Model: A Study with Matrix Product States

Mari Carmen Bañuls, Krzysztof Cichy, J. Ignacio Cirac +2

We numerically study the zero temperature phase structure of the multiflavor Schwinger model at nonzero chemical potential. Using matrix product states, we reproduce analytical res…

quant-ph2014119 cited

Quantum simulation of the Schwinger model: A study of feasibility

Stefan Kühn, J. Ignacio Cirac, Mari-Carmen Bañuls

We analyze some crucial questions regarding the practical feasibility of quantum simulation for lattice gauge models. Our analysis focuses on two models suitable for the quantum si…