High Quantum Efficiency Ultrananocrystalline Diamond Photocathode: Negative Electron Affinity Meets -doping
arXiv:1407.5113 · doi:10.1063/1.4896418
Abstract
We report results of quantum efficiency (QE) measurements carried out on a 150 nm thick nitrogen-incorporated ultrananocrystalline diamond terminated with hydrogen; abbreviated as (N)UNCD:H. (N)UNCD:H demonstrated a QE of 10 (0.1%) at 254 nm. Moreover, (N)UNCD:H was sensitive in visible light with a QE of 510 at 405 nm and 510 at 436 nm. After growth and prior to QE measurements, samples were exposed to air for about 2 hours for transfer and loading. Such design takes advantage of a key combination: 1) H-termination inducing negative electron affinity (NEA) on the (N)UNCD and stabilizies its surface against air exposure; and 2) N-incorporation inducing -type conductivity in intrinsically insulating UNCD.
3 pages; 3 figures
Cited by in corpus (3)
- Structural, Raman and photoluminescence studies on nanocrystalline diamond films: Effects of ammonia in feedstock
- Theoretical Evaluation of Electronic Density-of-states and Transport Effects on Field Emission from -type Ultrananocrystalline Diamond Films
- Helical Undulator Based on Partial Redistribution of Uniform Magnetic Field