Here we demonstrate the design, fabrication, and characterization of ultrafast, surface-plasmon enhanced Au nanorod optical field emitter arrays. We present a quantitative study of electron emission from Au nanorod arrays fabricated by high-resolution electron-beam lithography and excited by 35 fs pulses of 800 nm light. We present accurate models for both the optical field enhancement of Au nanorods within high-density arrays, and electron emission from those nanorods. We have also studied the effects of surface plasmon damping induced by metallic interface layers at the substrate/nanorod interface on near-field enhancement and electron emission. We have identified the peak optical field at which the electron emission mechanism transitions...
We show the capability of plasmonic lenses for next-generation ultrafast electron sources. Using ele...
Hetero-nanostructures featured with both strong plasmon absorption and high catalytic activity are b...
Recently, sub-wavelength-pitch stacked double-gate metal nanotip arrays have been proposed to realiz...
Here we demonstrate the design, fabrication, and characterization of ultrafast, surface-plasmon enha...
Here we demonstrate the design, fabrication, and characterization of ultrafast, surface-plasmon enha...
We demonstrate the design, fabrication, characterization, and operation of high-density arrays of Au...
We demonstrate the design, fabrication, characterization, and operation of high-density arrays of Au...
We demonstrate the design, fabrication, characterization, and operation of high-density arrays of Au...
The plasmon-enhanced photoemission based on Au nanoparticles and cesiated surfaces is investigated....
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
The excitation of surface plasmon from individual silver nanowires and gold nanorods is investigated...
The excitation of surface plasmon from individual silver nanowires and gold nanorods is investigated...
We study the plasmon modes of gold nanorods (as short as ∼100 nm) on a nonmetallic conductive substr...
The generation of collimated electron beams from metal double-gate nanotip arrays excited by near in...
In this Letter, we present a new class of near-infrared photodetectors comprising Au nanorods–ZnO na...
We show the capability of plasmonic lenses for next-generation ultrafast electron sources. Using ele...
Hetero-nanostructures featured with both strong plasmon absorption and high catalytic activity are b...
Recently, sub-wavelength-pitch stacked double-gate metal nanotip arrays have been proposed to realiz...
Here we demonstrate the design, fabrication, and characterization of ultrafast, surface-plasmon enha...
Here we demonstrate the design, fabrication, and characterization of ultrafast, surface-plasmon enha...
We demonstrate the design, fabrication, characterization, and operation of high-density arrays of Au...
We demonstrate the design, fabrication, characterization, and operation of high-density arrays of Au...
We demonstrate the design, fabrication, characterization, and operation of high-density arrays of Au...
The plasmon-enhanced photoemission based on Au nanoparticles and cesiated surfaces is investigated....
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
The excitation of surface plasmon from individual silver nanowires and gold nanorods is investigated...
The excitation of surface plasmon from individual silver nanowires and gold nanorods is investigated...
We study the plasmon modes of gold nanorods (as short as ∼100 nm) on a nonmetallic conductive substr...
The generation of collimated electron beams from metal double-gate nanotip arrays excited by near in...
In this Letter, we present a new class of near-infrared photodetectors comprising Au nanorods–ZnO na...
We show the capability of plasmonic lenses for next-generation ultrafast electron sources. Using ele...
Hetero-nanostructures featured with both strong plasmon absorption and high catalytic activity are b...
Recently, sub-wavelength-pitch stacked double-gate metal nanotip arrays have been proposed to realiz...