activity
20182026
most citedOn the Emerging Potential of Quantum Annealing Hardware for Combinatorial Optimization

23 citations · 26 across the 14 of their papers we have counts for

collaborators
Showing 2024Show all

6 papers · 1 filter

quant-ph2024

Potential Applications of Quantum Computing at Los Alamos National Laboratory

Andreas Bärtschi, Francesco Caravelli, Carleton Coffrin +16

The emergence of quantum computing technology over the last decade indicates the potential for a transformational impact in the study of quantum mechanical systems. It is natural t…

math.OC2024

Applications of Lifted Nonlinear Cuts to Convex Relaxations of the AC Power Flow Equations

Sergio I. Bugosen, Robert B. Parker, Carleton Coffrin

We demonstrate that valid inequalities, or lifted nonlinear cuts (LNC), can be projected to tighten the Second Order Cone (SOC), Convex DistFlow (CDF), and Network Flow (NF) relaxa…

quant-ph2024

QuantumAnnealing: A Julia Package for Simulating Dynamics of Transverse Field Ising Models

Zachary Morrell, Marc Vuffray, Sidhant Misra +1

Analog Quantum Computers are promising tools for improving performance on applications such as modeling behavior of quantum materials, providing fast heuristic solutions to optimiz…

eess.SY2024

Managing power balance and reserve feasibility in the AC unit commitment problem

Robert Parker, Carleton Coffrin

Incorporating the AC power flow equations into unit commitment models has the potential to avoid costly corrective actions required by less accurate power flow approximations. Howe…

quant-ph2024

Cost of Emulating a Small Quantum Annealing Problem in the Circuit-Model

Javier Gonzalez-Conde, Zachary Morrell, Marc Vuffray +2

Demonstrations of quantum advantage for certain sampling problems have generated considerable excitement for quantum computing and have further spurred the development of circuit-m…

quant-ph2024

Limitations of Fault-Tolerant Quantum Linear System Solvers for Quantum Power Flow

Parikshit Pareek, Abhijith Jayakumar, Carleton Coffrin +1

Quantum computers hold promise for solving problems intractable for classical computers, especially those with high time or space complexity. Practical quantum advantage can be sai…