Author

Yasir Arafat Maassoom

0 works0 citationsORCID

Recent research

  • Engineering & TechnologyOpen access

    Electrodynamics of Lattice Vacuum Defects: The Topological Origin of Drift-Induced Hole Generation

    Traditional solid-state physics treats the hole as a mathematical abstraction—a vacant state at the top of a valence band assigned an effective mass mh* purely to balance transport equations—without offering a physical mechanism for why this mass spans more than an order of magni...

    Zenodo (CERN European Organization for Nuclear Research)2026-08-220 citationsDOI
  • Engineering & TechnologyOpen access

    Electrodynamics of Lattice Vacuum Defects: The Topological Origin of Drift-Induced Hole Generation

    Electrodynamics of Lattice Vacuum Defects: The Topological Origin of Drift-Induced Hole Generation Abstract & Main Contents This manuscript presents a topological vacuum-defect model of solid-state hole mechanics, providing a deterministic physical explanation for effective mass,...

    Zenodo (CERN European Organization for Nuclear Research)2026-08-040 citationsDOI
  • Physics & SpaceOpen access

    Structural Mechanics in Vacuum Electrodynamics: A Classical Topological Approach

    Overview & Summary This manuscript presents a classical, deterministic mechanical framework for electron-positron pair production and particle emergence, addressing a fundamental gap in Quantum Electrodynamics (QED). While standard QED calculates pair production probabilities, it...

    Zenodo (CERN European Organization for Nuclear Research)2026-08-020 citationsDOI
  • Physics & SpaceOpen access

    Structural Mechanics in Vacuum Electrodynamics: A Classical Topological Approach

    Overview & Summary This manuscript presents a classical, deterministic mechanical framework for electron-positron pair production and particle emergence, addressing a fundamental gap in Quantum Electrodynamics (QED). While standard QED calculates pair production probabilities, it...

    Zenodo (CERN European Organization for Nuclear Research)2026-08-020 citationsDOI