Showing 121 - 140 results of 1,111 for search '"Quantum computing"', query time: 0.12s Refine Results
  1. 121

    Shortcut to chemically accurate quantum computing via density-based basis-set correction by Diata Traore, Olivier Adjoua, César Feniou, Ioanna-Maria Lygatsika, Yvon Maday, Evgeny Posenitskiy, Kerstin Hammernik, Alberto Peruzzo, Julien Toulouse, Emmanuel Giner, Jean-Philip Piquemal

    Published 2024-11-01
    “…Abstract Using GPU-accelerated state-vector emulation, we propose to embed a quantum computing ansatz into density-functional theory via density-based basis-set corrections to obtain quantitative quantum-chemistry results on molecules that would otherwise require brute-force quantum calculations using hundreds of logical qubits. …”
    Get full text
    Article
  2. 122
  3. 123
  4. 124
  5. 125

    Decomposition pipeline for large-scale portfolio optimization with applications to near-term quantum computing by Atithi Acharya, Romina Yalovetzky, Pierre Minssen, Shouvanik Chakrabarti, Ruslan Shaydulin, Rudy Raymond, Yue Sun, Dylan Herman, Ruben S. Andrist, Grant Salton, Martin J. A. Schuetz, Helmut G. Katzgraber, Marco Pistoia

    Published 2025-05-01
    “…Moreover, by decomposing large problems into several smaller subproblems, the pipeline enables the use of near-term quantum devices as solvers, providing a path toward practical utility of quantum computers in portfolio optimization.…”
    Get full text
    Article
  6. 126
  7. 127

    Building a Quantum Computer with Photons: Simulation Algorithm for Linear Optical Quantum Systems by Ramadian Ridho Illahi, I Wayan Sudiarta, Marzuki Marzuki, Arif Budianto, Dani Syirojulmunir

    Published 2024-09-01
    “…An implementation of quantum computation with linear optics has been developed as part of the simulation in this research. …”
    Get full text
    Article
  8. 128
  9. 129

    Observation of the non-Hermitian skin effect and Fermi skin on a digital quantum computer by Ruizhe Shen, Tianqi Chen, Bo Yang, Ching Hua Lee

    Published 2025-02-01
    “…To implement NHSE accumulation on a quantum computer, the time-evolution circuit not only needs to be non-reciprocal and non-unitary, but must also contain sufficiently many lattice qubits. …”
    Get full text
    Article
  10. 130

    Constructing Dynamical Symmetries for Quantum Computing: Applications to Coherent Dynamics in Coupled Quantum Dots by James R. Hamilton, Raphael D. Levine, Francoise Remacle

    Published 2024-12-01
    “…By that one can accurately propagate both the wave function and the density matrix with special relevance to quantum computing based on qubit architecture. Explicit examples are derived for the electronic dynamics in coupled semi-conducting nanoparticles that can be used as hardware for quantum technologies.…”
    Get full text
    Article
  11. 131
  12. 132

    The conceptual metaphors of memory: Cases of interdomanial nomadism from computer science to quantum computing by Charlène Meyers

    Published 2025-05-01
    “…This article aims at describing the “interdomanial nomadism” (Rossi [2015]) of the conceptual metaphors associated with memory from computer science to quantum computing. One corpus of 35 texts about quantum computing was compiled from the Scientific American. …”
    Get full text
    Article
  13. 133

    Observation of a non-Hermitian supersonic mode on a trapped-ion quantum computer by Yuxuan Zhang, Juan Carrasquilla, Yong Baek Kim

    Published 2025-04-01
    “…Abstract Quantum computers have long been anticipated to excel in simulating quantum many-body physics. …”
    Get full text
    Article
  14. 134

    Measuring correlation and entanglement between molecular orbitals on a trapped-ion quantum computer by Gabriel Greene-Diniz, Chris N. Self, Michal Krompiec, Luuk Coopmans, Marcello Benedetti, David Muñoz Ramo, Matthias Rosenkranz

    Published 2025-08-01
    “…Here we use the Quantinuum H1-1 trapped-ion quantum computer to calculate von Neumann entropies which quantify the orbital correlation and entanglement in a strongly correlated molecular system relevant to lithium-ion batteries (vinylene carbonate interacting with an O2 molecule). …”
    Get full text
    Article
  15. 135

    Variational Simulation of the Lipkin-Meshkov-Glick Model on a Neutral Atom Quantum Computer by R. Chinnarasu, C. Poole, L. Phuttitarn, A. Noori, T. M. Graham, S. N. Coppersmith, A. B. Balantekin, M. Saffman

    Published 2025-06-01
    “…We simulate the Lipkin-Meshkov-Glick model using the variational-quantum-eigensolver algorithm on a neutral atom quantum computer. We test the ground-state energy of spin systems with up to 15 spins. …”
    Get full text
    Article
  16. 136
  17. 137

    Hardware-efficient preparation of architecture-specific graph states on near-term quantum computers by Sebastian Brandhofer, Ilia Polian, Stefanie Barz, Daniel Bhatti

    Published 2025-01-01
    “…Abstract Highly entangled quantum states are an ingredient in numerous applications in quantum computing. However, preparing these highly entangled quantum states on currently available quantum computers at high fidelity is limited by ubiquitous errors. …”
    Get full text
    Article
  18. 138

    Novel Application of Quantum Computing for Routing and Spectrum Assignment in Flexi-Grid Optical Networks by Oumayma Bouchmal, Bruno Cimoli, Ripalta Stabile, Juan Jose Vegas Olmos, Carlos Hernandez, Ricardo Martinez, Ramon Casellas, Idelfonso Tafur Monroy

    Published 2024-10-01
    “…This work lays the foundation for future exploration of quantum computing in solving large-scale RSA problems in EONs, with the prospect of achieving quantum advantage as quantum technology continues to advance.…”
    Get full text
    Article
  19. 139

    Parallel remote state preparation for fully device-independent verifiable blind quantum computation by Sean A. Adamson

    Published 2025-01-01
    “…We introduce a device-independent two-prover scheme in which a classical verifier can use a simple untrusted quantum measurement device (the client device) to securely delegate a quantum computation to an untrusted quantum server. To do this, we construct a parallel self-testing protocol to perform device-independent remote state preparation of n qubits and compose this with the unconditionally secure universal verifiable blind quantum computation (VBQC) scheme of Fitzsimons and Kashefi [Phys. …”
    Get full text
    Article
  20. 140