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Tag: Fermi-Hubbard Model

  • Quantum Calculations Become More Efficient with Paired Gate Optimisation
    Quantum Physics

    Quantum Calculations Become More Efficient with Paired Gate Optimisation

    by Rohail T.March 31, 2026
  • Quantum simulation modeling complex molecular and chemical systems
    High Performance Computing

    Qoro Quantum’s System Integrates Multiple Simulation Methods for Enhanced Performance

    by Dr. DonovanMarch 3, 2026
  • Universal Ground State Preparation Enables Strong Correlation Simulations, Resolving 3x3 Degeneracies
    Quantum Algorithms

    Universal Ground State Preparation Enables Strong Correlation Simulations, Resolving 3×3 Degeneracies

    by Rohail T.December 17, 2025
  • Rashba and Dresselhaus Spin-Orbit Couplings Stabilize 1D Fermi Gas FFLO Phases, Enabling Selective Intraband Pairing
    Quantum Computing

    Rashba and Dresselhaus Spin-Orbit Couplings Stabilize 1D Fermi Gas FFLO Phases, Enabling Selective Intraband Pairing

    by Rohail T.December 9, 2025
  • Strong Interactions Break Anderson Localization, Driving Segregation in One-Dimensional Fermi-Hubbard Systems
    Physics

    Strong Interactions Break Anderson Localization, Driving Segregation in One-Dimensional Fermi-Hubbard Systems

    by Rohail T.December 9, 2025
  • Fermi-hubbard Model Thermodynamics Via Stochastic Calculus and Girsanov Transformation Enables Pfaffian-Free Simulations
    Physics

    Fermi-hubbard Model Thermodynamics Via Stochastic Calculus and Girsanov Transformation Enables Pfaffian-Free Simulations

    by Rohail T.November 19, 2025
  • Majorana String Simulation Advances Real-time Fermion Dynamics in Two-dimensional Lattice Systems
    Quantum Research News

    Majorana String Simulation Advances Real-time Fermion Dynamics in Two-dimensional Lattice Systems

    by Rohail T.November 14, 2025
  • Superconducting Pairing Correlations Measured on Quantum Computer in Three Regimes of Fermi-Hubbard Models
    Quantum Computing Business News

    Superconducting Pairing Correlations Measured on Quantum Computer in Three Regimes of Fermi-Hubbard Models

    by Rohail T.November 11, 2025
  • Quantum Simulation of 2D Fermi-Hubbard Dynamics Achieved Using Programmable 72-Qubit Digital Quantum Computer
    Quantum Simulation

    Quantum Simulation of 2D Fermi-Hubbard Dynamics Achieved Using Programmable 72-Qubit Digital Quantum Computer

    by Quantum TechScribeNovember 3, 2025
  • Quantum Computer Simulates 56-Qubit Fermionic Dynamics, Exceeding Classical Capabilities
    Physics

    Quantum Computer Simulates 56-Qubit Fermionic Dynamics, Exceeding Classical Capabilities

    by Rohail T.October 31, 2025
  • Enhancing Variational Quantum Algorithms Via Input-State Design Increases Expressive Capacity and Trainability
    Quantum Algorithms

    Enhancing Variational Quantum Algorithms Via Input-State Design Increases Expressive Capacity and Trainability

    by Rohail T.October 31, 2025
  • Quantum Algorithm Directly Diagonalizes Quasi-Degenerate Manifolds, Resolving Low-Energy Eigenvalue Problems
    Quantum Research News

    Quantum Algorithm Directly Diagonalizes Quasi-Degenerate Manifolds, Resolving Low-Energy Eigenvalue Problems

    by Rohail T.October 13, 2025
  • Quantum Simulation of Fermi-Hubbard Dynamics Achieves Scalability with over 100 Qubits on Superconducting Computers
    Physics

    Quantum Simulation of Fermi-Hubbard Dynamics Achieves Scalability with over 100 Qubits on Superconducting Computers

    by Dr. DonovanSeptember 21, 2025
  • Machine Learning Predicts Entanglement Entropy in One-Dimensional Fermi-Hubbard Systems
    Physics

    Machine Learning Predicts Entanglement Entropy in One-Dimensional Fermi-Hubbard Systems

    by Dr. DonovanJuly 29, 2025
  • Ultracold Gases Reveal New Insights Into Hubbard Model Physics
    Quantum Research News

    Ultracold Gases Reveal New Insights Into Hubbard Model Physics

    by Dr. DonovanJuly 9, 2025
  • Cold-Atom Simulations Reveal New Insights Into Material Specific Heat
    Quantum Technology

    Cold-Atom Simulations Reveal New Insights Into Material Specific Heat

    by Dr. DonovanJuly 8, 2025
  • Quantum Circuit Optimisation Achieves Speedup via Matrix-Free Riemannian Methods.
    Quantum Algorithms

    Quantum Circuit Optimisation Achieves Speedup via Matrix-Free Riemannian Methods.

    by Dr. DonovanJuly 2, 2025
  • Quantum Simulation Accelerates Materials Modelling with Reduced Computational Cost.
    Quantum Applications, Quantum Simulation

    Quantum Simulation Accelerates Materials Modelling with Reduced Computational Cost.

    by Dr. DonovanJune 27, 2025
  • Future Colliders Probe Physics Beyond Standard Model, Seeking New Higgs Signals.
    Quantum Algorithms

    Adaptive Quantum Computation Accurately Simulates Berry Phases in Topological Systems.

    by Dr. DonovanJune 25, 2025
  • Quantum Computing Holds Promise for Economic Benefit Says Zapata AI
    Quantum Computing Business News

    Quantum Computing Holds Promise for Economic Benefit Says Zapata AI

    by Dr. DonovanSeptember 16, 2024
  • Doublon Formation's Role in Many-Body Systems Unveiled
    Quantum Research News

    Doublon Formation’s Role in Many-Body Systems Unveiled

    by Dr. DonovanMarch 9, 2024
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