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20182020
most citedOrdering of Trotterization: Impact on Errors in Quantum Simulation of Electronic Structure

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quant-ph2020

Implementation of Measurement Reduction for the Variational Quantum Eigensolver

Alexis Ralli, Peter Love, Andrew Tranter +1

One limitation of the variational quantum eigensolver algorithm is the large number of measurement steps required to estimate different terms in the Hamiltonian of interest. Unitar…

quant-ph2020

Contextual Subspace Variational Quantum Eigensolver

William M. Kirby, Andrew Tranter, Peter J. Love

We describe the contextual subspace variational quantum eigensolver (CS-VQE), a hybrid quantum-classical algorithm for approximating the ground state energy of a Hamiltonian. The a…

quant-ph201950 cited

Ordering of Trotterization: Impact on Errors in Quantum Simulation of Electronic Structure

Andrew Tranter, Peter J. Love, Florian Mintert +2

Trotter-Suzuki decompositions are frequently used in the quantum simulation of quantum chemistry. They transform the evolution operator into a form implementable on a quantum devic…

quant-ph2019

Measurement reduction in variational quantum algorithms

Andrew Zhao, Andrew Tranter, William M. Kirby +3

Variational quantum algorithms are promising applications of noisy intermediate-scale quantum (NISQ) computers. These algorithms consist of a number of separate prepare-and-measure…

quant-ph2018

A comparison of the Bravyi-Kitaev and Jordan-Wigner transformations for the quantum simulation of quantum chemistry

Andrew Tranter, Peter J. Love, Florian Mintert +1

The ability to perform classically intractable electronic structure calculations is often cited as one of the principal applications of quantum computing. A great deal of theoretic…