We have recently proposed a new approach to optical lithography that could be used to replicate arrays of metal nanoparticles using broad beam illumination with visible light and standard photoresist. The method relies on resonant excitation of the surface plasmon oscillation in the nanoparticles. When excited at the surface plasmon frequency, a resonantly enhanced dipole field builds up around the nanoparticles. This dipole field is used to locally expose a thin layer of photoresist, generating a replica of the original pattern in the resist. Silver nanoparticles on photoresist can be resonantly excited at wavelengths ranging from 410 nm to 460 nm, allowing for resonantly enhanced exposure of standard g-line photoresist. Finite Difference ...
No Abstract.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/58080/1/1129_ftp.pd
In this work, metal nanoparticles produced by nanosphere lithography were studied in terms of their...
Metal Nanoparticles exhibit optical resonances caused by collective electron oscillations known as l...
We have recently proposed a new approach to optical lithography that could be used to replicate arra...
The diffraction limit is the major stumbling block in pushing optical lithography to feature sizes s...
The diffraction limit is the major stumbling block in pushing optical lithography to feature sizes s...
The diffraction limit is the major stumbling block in pushing optical lithography to feature sizes s...
Plasmonic nanoparticles are able to control light at nanometre-scale by coupling electromagnetic fie...
W. Andrew Murray, Simion Astilean, and William L. Barnes, Physical Review B, Vol. 69, article 165407...
The current thrust towards developing silicon compatible integrated nanophotonic devices is driven b...
The current thrust towards developing silicon compatible integrated nanophotonic devices is driven b...
The current thrust towards developing silicon compatible integrated nanophotonic devices is driven b...
We demonstrate an innovative process to fabricate uniformly shaped plasmonic nanoparticles. Laser in...
Tetrahedral nanopyramids made of silver and gold over ITO/glass surfaces are fabricated. Our protoco...
The resonant excitation of free electrons in metallic nanostructures enables extreme near field inte...
No Abstract.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/58080/1/1129_ftp.pd
In this work, metal nanoparticles produced by nanosphere lithography were studied in terms of their...
Metal Nanoparticles exhibit optical resonances caused by collective electron oscillations known as l...
We have recently proposed a new approach to optical lithography that could be used to replicate arra...
The diffraction limit is the major stumbling block in pushing optical lithography to feature sizes s...
The diffraction limit is the major stumbling block in pushing optical lithography to feature sizes s...
The diffraction limit is the major stumbling block in pushing optical lithography to feature sizes s...
Plasmonic nanoparticles are able to control light at nanometre-scale by coupling electromagnetic fie...
W. Andrew Murray, Simion Astilean, and William L. Barnes, Physical Review B, Vol. 69, article 165407...
The current thrust towards developing silicon compatible integrated nanophotonic devices is driven b...
The current thrust towards developing silicon compatible integrated nanophotonic devices is driven b...
The current thrust towards developing silicon compatible integrated nanophotonic devices is driven b...
We demonstrate an innovative process to fabricate uniformly shaped plasmonic nanoparticles. Laser in...
Tetrahedral nanopyramids made of silver and gold over ITO/glass surfaces are fabricated. Our protoco...
The resonant excitation of free electrons in metallic nanostructures enables extreme near field inte...
No Abstract.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/58080/1/1129_ftp.pd
In this work, metal nanoparticles produced by nanosphere lithography were studied in terms of their...
Metal Nanoparticles exhibit optical resonances caused by collective electron oscillations known as l...