Scinovex
article Open AccessTop 1% cited

A variational eigenvalue solver on a photonic quantum processor

Nature Communications · 2014 · Vol. 5(1) · pp. 4213–4213
Alberto PeruzzoJarrod R. McCleanPeter ShadboltMan‐Hong YungXiaoqi ZhouPeter J. LoveAlán Aspuru‐GuzikJeremy L. O’Brien

Abstract

Quantum computers promise to efficiently solve important problems that are intractable on a conventional computer. For quantum systems, where the physical dimension grows exponentially, finding the eigenvalues of certain operators is one such intractable problem and remains a fundamental challenge. The quantum phase estimation algorithm efficiently finds the eigenvalue of a given eigenvector but requires fully coherent evolution. Here we present an alternative approach that greatly reduces the requirements for coherent evolution and combine this method with a new approach to state preparation based on ansätze and classical optimization. We implement the algorithm by combining a highly reconfigurable photonic quantum processor with a conventional computer. We experimentally demonstrate the feasibility of this approach with an example from quantum chemistry--calculating the ground-state molecular energy for He-H(+). The proposed approach drastically reduces the coherence time requirements, enhancing the potential of quantum resources available today and in the near future.

Quantum Computing Algorithms and ArchitectureQuantum Information and CryptographyNeural Networks and Reservoir ComputingEigenvalues and eigenvectorsQuantumComputer scienceQuantum computerCoherence (philosophical gambling strategy)SolverQuantum algorithmPhotonicsDimension (graph theory)Computational science

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Alfred P. Sloan Foundation
  • John Templeton Foundation
  • Camille and Henry Dreyfus Foundation
  • Royal Academy of Engineering
  • National Natural Science Foundation of China
  • Engineering and Physical Sciences Research Council
  • National Key Research and Development Program of China
  • Division of Chemistry
  • Air Force Office of Scientific Research
Citations
4,361
FWCI
29.70
field-weighted impact
References
47
Percentile
100%
vs. same field & year
Citations per year
Cited by
The theory of variational hybrid quantum-classical algorithms
New Journal of Physics · 2016 · 2,165 citations
Hybrid Quantum-Classical Algorithms and Quantum Error Mitigation
Journal of the Physical Society of Japan · 2021 · 489 citations
Integrated photonic quantum technologies
Nature Photonics · 2019 · 1,350 citations
Barren plateaus in quantum neural network training landscapes
Nature Communications · 2018 · 1,946 citations
References
�ber das Paulische �quivalenzverbot
The European Physical Journal A · 1928 · 2,498 citations
Photonic quantum technologies
Nature Photonics · 2009 · 2,266 citations
Efficient Quantum Algorithms for Simulating Sparse Hamiltonians
Communications in Mathematical Physics · 2006 · 654 citations
Towards quantum chemistry on a quantum computer
Nature Chemistry · 2010 · 797 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

A variational eigenvalue solver on a photonic quantum processor · Scinovex