Abstract
The authors explore the impact of femtosecond light pulses on the field-emission properties of single-gate molybdenum field-emitter arrays with nanometer scale tip apex. Despite the small fraction of the emission area, we observed a single-photon photoelectric current from the emitter tips on top of the dc field-emission current under the irradiation of 50 fs laser pulses at a wavelength of 800 nm with an external quantum efficiency up to ∼2× 10-7 and the emitter tip quantum efficiency of ∼ 10-2. The result indicates that metallic field-emitter arrays are promising for applications that require high-brightness short electron beams. © 2008 American Institute of Physics.
Cite
CITATION STYLE
Tsujino, S., Beaud, P., Kirk, E., Vogel, T., Sehr, H., Gobrecht, J., & Wrulich, A. (2008). Ultrafast electron emission from metallic nanotip arrays induced by near infrared femtosecond laser pulses. Applied Physics Letters, 92(19). https://doi.org/10.1063/1.2924290
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