Skip to content
Quantum Zeitgeist
  • Quantum Computing
    • Quantum Algorithms
    • Quantum Applications
    • Quantum Computing Business News
    • Quantum Research News
    • Quantum Funding Landscape
    • Quantum Features
    • Quantum Cloud
    • Quantum Internet
    • Quantum Machine Learning
    • Quantum Security
  • Technology News
    • Artificial Intelligence
    • Metaverse
    • Machine Learning
    • Robotics
    • Physics
    • Technology Features
  • Quantum Company Navigator

Tag: correlated states

  • Crsb Exhibits Strain-Controlled Metal-Insulator Transition, Unifying Flat-Band and Altermagnetic Physics
    Quantum Technology

    Crsb Exhibits Strain-Controlled Metal-Insulator Transition, Unifying Flat-Band and Altermagnetic Physics

    by Rohail T.December 10, 2025
  • Mean-field Modelling Captures Ground States in Magic-Angle Twisted Bilayer Graphene Moire Materials
    Technology

    Mean-field Modelling Captures Ground States in Magic-Angle Twisted Bilayer Graphene Moire Materials

    by Rohail T.December 2, 2025
  • Quantum Monte Carlo Study Reveals Chiral D+id-wave Superconductivity in Twisted Bilayer Graphene
    Quantum Computing Business News

    Quantum Monte Carlo Study Reveals Chiral D+id-wave Superconductivity in Twisted Bilayer Graphene

    by Rohail T.November 14, 2025
  • Twisted layered graphite sheets forming diamond-shaped moire interference pattern, flat electronic bands glowing across structure
    Technology, Quantum Research News

    Twisted Graphite Hosts Two-Dimensional Flat-Bands in Moire-Diamonds, Enabling Robust Correlated States

    by Rohail T.October 16, 2025
  • Supermoiré Lattices Enable Cascade of Superconductor-Insulator Transitions and Strong Correlations in Twisted Graphene
    Quantum Research News

    Supermoiré Lattices Enable Cascade of Superconductor-Insulator Transitions and Strong Correlations in Twisted Graphene

    by Rohail T.October 1, 2025
  • Rhombohedral Pentalayer Graphene/hBN Heterostructures Studied with Many-Body Perturbation Theory Reveals Correlated Topological States
    Technology, Quantum Research News

    Rhombohedral Pentalayer Graphene/hBN Heterostructures Studied with Many-Body Perturbation Theory Reveals Correlated Topological States

    by Rohail T.September 29, 2025
  • Rydberg Atom Study Reveals Interaction-Enhanced Decay and Configuration-Selective Two-Zeno Effect
    Physics

    Rydberg Atom Study Reveals Interaction-Enhanced Decay and Configuration-Selective Two-Zeno Effect

    by Quantum NewsSeptember 10, 2025
  • Efficient Thermal State Preparation for Many-Body Systems with Quantum Processors.
    Quantum Research News

    Efficient Thermal State Preparation for Many-Body Systems with Quantum Processors.

    by Quantum NewsJune 27, 2025

Quantum Computing News

Quantum Zeitgeist covers the business, science and technology of quantum computing. Founded in 2018, we publish daily news, company analysis and original features for researchers, investors and technology leaders. Explore over 940 quantum companies across 47 countries in our Quantum Navigator.

Quantum Information Summit 2026
Quantum Companies, Quantum Computing Start-Up and Quantum Eco System
[Ad] The classic Textbook for learning Quantum Programming
[Ad] Pre Order This New Book On Quantum Programming In Depth
[Ad] Pre-Order This New Book On Quantum Programming In Depth

[Ad]

Quantum Computing News
Bluesky Logo

Quantum Computing

  • Quantum Applications
  • Quantum Books
  • Quantum Computing Courses
  • Quantum Machine Learning
  • Quantum Jobs
  • Quantum Programming

Quantum Computing

  • Quantum Cloud
  • Quantum Landscape
  • Quantum Cryptography
  • Quantum Finance
  • Quantum Hardware
  • Quantum Internet
  • Quantum Investment

Technology

  • Artificial Intelligence
  • Analog Computing
  • Deep Tech
  • Emerging Technology
  • High Performance Computing
  • Machine Learning
  • Space
  • Science
  • Robotics

About Us

  • Terms and Conditions
  • Privacy Policy
  • Contact Us

Disclaimer: All material, including information from or attributed to Quantum Zeitgeist or individual authors of content on this website, has been obtained from sources believed to be accurate as of the date of publication. However, Quantum Zeitgeist makes no warranty of the accuracy or completeness of the information and Quantum Zeitgeist does not assume any responsibility for its accuracy, efficacy, or use. Any information on the website obtained by Quantum Zeitgeist from third parties has not been reviewed for accuracy.

Copyright 2019 to 2025 The Quantum Zeitgeist website is owned and operated by Hadamard LLC, a Wyoming limited liability company.