Record quantum efficiency from strain compensated superlattice GaAs/GaAsP photocathode for spin polarized electron source

Photocathodes based on GaAs and other III–V semiconductors are capable of producing highly spin-polarized electron beams. GaAs/GaAsP superlattice photocathodes exhibit high spin polarization; however, the quantum efficiency (QE) is limited to 1% or less. To increase the QE, we fabricated a GaAs/GaAs...

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書目詳細資料
發表在:AIP Advances
Main Authors: Jyoti Biswas, Luca Cultrera, Wei Liu, Erdong Wang, John Skaritka, Kim Kisslinger, S. D. Hawkins, S. R. Lee, J. F. Klem
格式: Article
語言:英语
出版: AIP Publishing LLC 2023-08-01
在線閱讀:http://dx.doi.org/10.1063/5.0159183
實物特徵
總結:Photocathodes based on GaAs and other III–V semiconductors are capable of producing highly spin-polarized electron beams. GaAs/GaAsP superlattice photocathodes exhibit high spin polarization; however, the quantum efficiency (QE) is limited to 1% or less. To increase the QE, we fabricated a GaAs/GaAsP superlattice photocathode with a Distributed Bragg Reflector (DBR) underneath. This configuration creates a Fabry–Pérot cavity between the DBR and GaAs surface, which enhances the absorption of incident light and, consequently, the QE. These photocathode structures were grown using molecular beam epitaxy and achieved record quantum efficiencies exceeding 15% and electron spin polarization of about 75% when illuminated with near-bandgap photon energies.
ISSN:2158-3226