DocumentCode :
271033
Title :
Ultrafast, surface plasmon-enhanced, au nanorod optical field electron emitter arrays
Author :
Hobbs, R.G. ; Yang, Yi ; Keathley, P.D. ; De Leo, Eva ; Graves, W.S. ; Berggren, Karl K. ; Fallahi, Afshin ; Kärtner, Franz X.
Author_Institution :
Massachusetts Inst. of Technol., Cambridge, MA, USA
fYear :
2014
fDate :
6-10 July 2014
Firstpage :
16
Lastpage :
17
Abstract :
In this work we demonstrate the design, fabrication and characterization of ultrafast, surface-plasmon enhanced Au nanorod photofield emitter arrays. We present a quantitative analysis of charge yield from plasmonic Au nanorod arrays fabricated by high-resolution electron beam lithography and triggered by 35 fs pulses of 800 nm light. We have accurately modeled both the optical field enhancement of Au nanorods in high-density arrays, and electron emission from those nanorods. We have considered the effects of surface plasmon damping induced by metallic interface layers at the substrate/nanorod interface on electron emission. We have identified the peak optical field at which the electron emission mechanism transitions from a 3-photon absorption mechanism to strong-field tunneling emission. Moreover, we have investigated the effects of nanorod array density on nanorod charge yield, including measurement of space-charge effects.
Keywords :
damping; electron beam lithography; electron field emission; gold; nanorods; space charge; surface plasmons; tunnelling; 3-photon absorption; Au; electron beam lithography; electron emission; high-density arrays; metallic interface layers; nanorod charge yield; optical field electron emitter arrays; optical field enhancement; photofield emitter arrays; space-charge effects; strong-field tunneling emission; substrate-nanorod interface; surface plasmon damping; surface plasmon-enhanced Au nanorod arrays; time 35 fs; ultrafast Au nanorod arrays; wavelength 800 nm; Cathodes; Gold; Optical device fabrication; Optical pulses; Optical surface waves; Plasmons; Ultrafast optics; electron emitter array; nanostructures; photocathode; plasmonics; ultrafast optics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vacuum Nanoelectronics Conference (IVNC), 2014 27th International
Conference_Location :
Engelberg
Print_ISBN :
978-1-4799-5306-6
Type :
conf
DOI :
10.1109/IVNC.2014.6894737
Filename :
6894737
Link To Document :
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