papers

Publications (20)

quant-ph2019

OpenFermion: The Electronic Structure Package for Quantum Computers

Jarrod R. McClean, Kevin J. Sung, Ian D. Kivlichan +32

Quantum simulation of chemistry and materials is predicted to be an important application for both near-term and fault-tolerant quantum devices. However, at present, developing and…

quant-ph2025

Faster quantum chemistry simulations on a quantum computer with improved tensor factorization and active volume compilation

Athena Caesura, Cristian L. Cortes, William Pol +8

Electronic structure calculations of molecular systems are among the most promising applications for fault-tolerant quantum computing (FTQC) in quantum chemistry and drug design. H…

quant-ph2018

A framework for algorithm deployment on cloud-based quantum computers

Sukin Sim, Yudong Cao, Jonathan Romero +2

In recent years, the field of quantum computing has significantly developed in both the improvement of hardware as well as the assembly of various software tools and platforms, inc…

quant-ph2025

Information flow in parameterized quantum circuits

Abhinav Anand, Lasse Bjørn Kristensen, Felix Frohnert +2

In this work, we introduce a new way to quantify information flow in quantum systems, especially for parameterized quantum circuits. We use a graph representation of the circuits a…

quant-ph2018

Low-depth circuit ansatz for preparing correlated fermionic states on a quantum computer

Pierre-Luc Dallaire-Demers, Jonathan Romero, Libor Veis +2

Quantum simulations are bound to be one of the main applications of near-term quantum computers. Quantum chemistry and condensed matter physics are expected to benefit from these t…

quant-ph2023

Fault-tolerant quantum computation of molecular observables

Mark Steudtner, Sam Morley-Short, William Pol +8

Over the past three decades significant reductions have been made to the cost of estimating ground-state energies of molecular Hamiltonians with quantum computers. However, compara…