All Stories

  1. Rational design of efficient defect-based quantum emitters
  2. Dielectric loss due to charged-defect acoustic phonon emission
  3. First-principles calculations of defects and electron–phonon interactions: Seminal contributions of Audrius Alkauskas to the understanding of recombination processes
  4. Transition Metal Impurities as Shallow Donors in β‐Ga2O3
  5. Dimensionality effects on trap-assisted recombination: the Sommerfeld parameter
  6. Trap-Assisted Auger-Meitner Recombination from First Principles
  7. Telecom-wavelength NV-center analogs in cubic boron nitride
  8. Iodine Vacancies do not Cause Nonradiative Recombination in Halide Perovskites
  9. First-principles study of quantum defect candidates in beryllium oxide
  10. Probing the Optical Dynamics of Quantum Emitters in Hexagonal Boron Nitride
  11. Defect tolerance in halide perovskites: A first-principles perspective
  12. Prospects for n-type conductivity in cubic boron nitride
  13. All-inorganic halide perovskites as candidates for efficient solar cells
  14. Nonrad: Computing nonradiative capture coefficients from first principles
  15. Minimizing hydrogen vacancies to enable highly efficient hybrid perovskites
  16. Thermodynamics of boron incorporation in BGaN
  17. Impact of dangling bonds on properties of h-BN
  18. Boron dangling bonds in a monolayer of hexagonal boron nitride
  19. Spinning up quantum defects in 2D materials
  20. Hidden role of Bi incorporation in nonradiative recombination in methylammonium lead iodide
  21. Dangling Bonds in Hexagonal Boron Nitride as Single-Photon Emitters
  22. First-principles study of bandgap bowing in BGaN alloys