CsK2Sb photocathodes with quantum efficiency on the order of 10% at 532 nm, and lifetime greater than 90 days at low voltage, were successfully manufactured via co-deposition of alkali species emanating from an effusion source. Photocathodes were characterized as a function of antimony layer thickness and alkali consumption, inside a vacuum chamber that was initially baked, but frequently vented without re-baking. Photocathode lifetime measured at low voltage is correlated with the antimony layer thickness. Photocathodes manufactured with comparatively thick antimony layers exhibited the best lifetime. We speculate that the antimony layer serves as a reservoir, or sponge, for the alkali
Due to the excellent photoemissive properties, especially low thermal emittance and high sensitivity...
For short, high-intensity electron bunches, alkali-tellurides have proved to be a reliable photo-cat...
Multi-alkali antimonide photocathodes can have high quantum efficiency similar to UV-sensitive (Cs2T...
CsK2Sb photocathodes with quantum efficiency on the order of 10% at 532 nm, and lifetime greater tha...
CsK2Sb photocathodes with quantum efficiency on the order of 10% at 532 nm, and lifetime greater tha...
CsxKySb photocathodes grown on GaAs and molybdenum substrates were evaluated using a –300 kV dc high...
High quantum efficiency photocathodes are mandatory for the operation of photoinjector driven electr...
Over the past ten years photocathodes have been extensively used as high-brightness electron sources...
Abstract Different methods for the preparation of KCsSb photocathodes, suitable for electron sourc...
To advance magnetized gun research in the United States, a compact DC high voltage photogun with inv...
Next generation light sources, based on Energy Recovery Linac and Free Electron Laser technology wil...
Alkali antimonide photocathodes with high quantum efficiency hold the promise of delivering electron...
High quantum efficiency photocathodes are mandatory for the operation of photoinjector driven electr...
Future high brightness photoelectron sources delivering gt;100 mA average current call for a new ge...
K-Cs-Sb bialkali antimonide photocathodes grown by a triple-element codeposition method have been fo...
Due to the excellent photoemissive properties, especially low thermal emittance and high sensitivity...
For short, high-intensity electron bunches, alkali-tellurides have proved to be a reliable photo-cat...
Multi-alkali antimonide photocathodes can have high quantum efficiency similar to UV-sensitive (Cs2T...
CsK2Sb photocathodes with quantum efficiency on the order of 10% at 532 nm, and lifetime greater tha...
CsK2Sb photocathodes with quantum efficiency on the order of 10% at 532 nm, and lifetime greater tha...
CsxKySb photocathodes grown on GaAs and molybdenum substrates were evaluated using a –300 kV dc high...
High quantum efficiency photocathodes are mandatory for the operation of photoinjector driven electr...
Over the past ten years photocathodes have been extensively used as high-brightness electron sources...
Abstract Different methods for the preparation of KCsSb photocathodes, suitable for electron sourc...
To advance magnetized gun research in the United States, a compact DC high voltage photogun with inv...
Next generation light sources, based on Energy Recovery Linac and Free Electron Laser technology wil...
Alkali antimonide photocathodes with high quantum efficiency hold the promise of delivering electron...
High quantum efficiency photocathodes are mandatory for the operation of photoinjector driven electr...
Future high brightness photoelectron sources delivering gt;100 mA average current call for a new ge...
K-Cs-Sb bialkali antimonide photocathodes grown by a triple-element codeposition method have been fo...
Due to the excellent photoemissive properties, especially low thermal emittance and high sensitivity...
For short, high-intensity electron bunches, alkali-tellurides have proved to be a reliable photo-cat...
Multi-alkali antimonide photocathodes can have high quantum efficiency similar to UV-sensitive (Cs2T...