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Tag: transition metal dichalcogenides

  • Spectroscopic Ellipsometry Advances Non-Destructive Analysis of Two-Dimensional Materials and Van Der Waals Structures
    Technology

    Spectroscopic Ellipsometry Advances Non-Destructive Analysis of Two-Dimensional Materials and Van Der Waals Structures

    by Rohail T.December 19, 2025
  • 2d Materials Synthesis Via Nano-Confinement Creates Tailored Monolayers and Janus Structures
    Technology

    2d Materials Synthesis Via Nano-Confinement Creates Tailored Monolayers and Janus Structures

    by Rohail T.December 19, 2025
  • Two-dimensional Helical Superconductivity and Gapless Edge Modes Emerge in 1T-WS/2H-WS Heterostructures
    Quantum Technology

    Two-dimensional Helical Superconductivity and Gapless Edge Modes Emerge in 1T-WS/2H-WS Heterostructures

    by Rohail T.December 13, 2025
  • Twisted Bilayer WSe2 Superconductivity Evolves Smoothly across 3.65° to 5.0° Twist Angles, Linking to Fermi Surface Reconstruction
    Technology

    Twisted Bilayer WSe2 Superconductivity Evolves Smoothly across 3.65° to 5.0° Twist Angles, Linking to Fermi Surface Reconstruction

    by Rohail T.December 9, 2025
  • Doped-mott Insulator Realizes Vertical/Lateral Polytype Heterostructures, Demonstrating Transparent Effects in 1H/1T Structures
    Quantum Algorithms

    Doped-mott Insulator Realizes Vertical/Lateral Polytype Heterostructures, Demonstrating Transparent Effects in 1H/1T Structures

    by Rohail T.December 5, 2025
  • Graphene/wse₂ Heterostructures Demonstrate Tunable Spin-Orbit Coupling with Rasbha and Valley-Zeeman Effects
    Technology

    Graphene/wse₂ Heterostructures Demonstrate Tunable Spin-Orbit Coupling with Rasbha and Valley-Zeeman Effects

    by Rohail T.December 4, 2025
  • 2d Material Metasurface Achieves Compact, Polarization-Invariant Light Control Within 8x8 Μm Footprint
    Technology

    2d Material Metasurface Achieves Compact, Polarization-Invariant Light Control Within 8×8 Μm Footprint

    by Rohail T.December 2, 2025
  • Team Predicts Topological Superlattice Bands with Spin-Orbit Coupling, Extending Beyond Perturbative Regimes
    Quantum Research News

    Team Predicts Topological Superlattice Bands with Spin-Orbit Coupling, Extending Beyond Perturbative Regimes

    by Rohail T.November 24, 2025
  • Spin-quenching in Molecule-transition-metal-dichalcogenide Heterostructures Enhances Functionality Via 20, 30 meV Interlayer Exciton Control
    Physics

    Spin-quenching in Molecule-transition-metal-dichalcogenide Heterostructures Enhances Functionality Via 20, 30 meV Interlayer Exciton Control

    by Rohail T.November 21, 2025
  • Exciton-based Sensing Detects Remote Electron Correlations in 2D Heterostructures, Enabling Analysis of Distinct States
    Technology

    Exciton-Based Sensing Detects Remote Electron Correlations in 2D Heterostructures, Enabling Analysis of Distinct Quantum States

    by Rohail T.October 31, 2025
  • Res2 Maintains Layer-Tolerant Defect Levels from Monolayer to Bulk, Enabling Single-Photon Emission
    Quantum Research News

    ReS₂ Maintains Layer-Independent Defect States from Monolayer to Bulk, Enabling Stable Single-Photon Emission

    by Rohail T.October 28, 2025
  • Non-hermitian Bethe-Salpeter Equation Reveals Exceptional Points in Excitonic Spectra of Open Systems
    Quantum Technology, Quantum Research News

    Non-hermitian Bethe-Salpeter Equation Reveals Exceptional Points in Excitonic Spectra of Open Systems

    by Rohail T.October 13, 2025
  • Tunable Van Der Waals Heterostructures Align Electronic Levels and Reveal Exciton Diversity in 2D Materials
    Physics

    Tunable Van Der Waals Heterostructures Align Electronic Levels and Reveal Exciton Diversity in 2D Materials

    by Rohail T.October 8, 2025
  • Rashba and valley-Zeeman Splittings Alter Weak Localization and Magnetoconductivity Sign in Spin-orbit Coupled Graphene
    Quantum Research News, Technology

    Rashba and valley-Zeeman Splittings Alter Weak Localization and Magnetoconductivity Sign in Spin-orbit Coupled Graphene

    by Rohail T.September 26, 2025
  • Spatiotemporal Dynamics of Moiré Excitons in Van Der Waals Heterostructures Reveal Complex Thermalization
    Quantum Mechanics

    Spatiotemporal Dynamics of Moiré Excitons in Van Der Waals Heterostructures Reveal Complex Thermalization

    by Quantum NewsSeptember 18, 2025
  • Researchers unlock novel excitonic phases in trilayer moiré superlattices with strong interactions
    Physics

    Researchers unlock novel excitonic phases in trilayer moiré superlattices with strong interactions

    by Quantum NewsAugust 25, 2025
  • Squeezed Photons Enable Real-Time Monitoring of Valley Excitons in 2D Materials
    Quantum Research News

    Squeezed Photons Enable Real-Time Monitoring of Valley Excitons in 2D Materials

    by Quantum NewsAugust 18, 2025
  • Coherent Light Pulses Enable Deterministic Excitation of Hidden Valleys in Monolayer TMDs
    Quantum Applications

    Coherent Light Pulses Enable Deterministic Excitation of Hidden Valleys in Monolayer TMDs

    by Quantum NewsAugust 12, 2025
  • All-2D Transition Metal Dichalcogenide Nanosheets Enhance Raindrop Energy Harvesting.
    Technology

    All-2D Transition Metal Dichalcogenide Nanosheets Enhance Raindrop Energy Harvesting.

    by Quantum NewsJuly 14, 2025
  • Breakthrough in Quantum Materials Enables Secure Communication.
    Quantum Research News

    Breakthrough in Quantum Materials Enables Secure Communication.

    by SchrödingerJanuary 30, 2025
  • Breakthrough Nanodisk Combines High Refractive Index with Nonlinearity
    Quantum Research News

    Breakthrough Nanodisk Combines High Refractive Index with Nonlinearity

    by Quantum NewsSeptember 11, 2024

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  • Understand the latest developments in Quantum. And how they drive the next wave of the Quantum Revolution. Understand from Quantum experts how Quantum Technologies are changing the technological landscape.
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Latest Quantum Articles
  • Silicon T Center Achieves Long-Distance Quantum Communication with Enhanced Fidelity
  • Pump–Probe Setups Benefit from Theory Describing Multi-Band Systems and Kerr Rotation Effects
  • Neural Networks Advance with Fast, Low-Energy Matrix-Vector Multiplication via Brillouin Scattering
  • Charged Shockwaves Demonstrate Novel Time Delays in Einstein-Maxwell Effective Field Theory
  • 6G NOMA Achieves Noise-Resilient Decoding with CRC-Aided GRAND for Beyond 5G Networks
  • Process Tensors Enable Exact Quantum Work Statistics for Driven Open Quantum Systems
  • Vector Field Representations Advance Pattern Recognition in Complex, High-Dimensional Systems
  • Stronger Quantum Divergences Enable Improved Noisy Channel Characterization
  • Gaussian Purification Achieves Doubled Photon Number for Passive Bosonic States
  • Scalable Quantum Tests Enable Contextuality Verification of Stabilizer Codes and Games
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