Low-dimensional nano-patterned surface fabricated by direct-write UV-chemically induced geometric inscription technique

  • Allsop T
  • Neal R
  • Kundrat V
  • et al.
1Citations
Citations of this article
5Readers
Mendeley users who have this article in their library.

Abstract

We investigate a nano-patterning process which creates reproducible periodic surface topological features that range in size from ∼100  μm to ∼20  μm. Specifically, we have fabricated multi-layered thin films consisting of germanium/silicon strata on a planar substrate, with each layer having nanometers thickness. The material processing exploits focused 244 nm ultra-violet laser light and an opto-mechanical setup typically applied to the inscription of fiber gratings, and is based upon the well-known material compaction interaction of ultra-violet light with germanium oxides. We show this process can be extended to create arrays of metal nano-antennas by adding a metal overlay to the thin film. This results in arrays with dimensions that span nanometer- to centimeter-length scales. Also, each nano-antenna consists of "nano-blocks." Experimental data are presented that show the UV irradiance dosage used to create these metal nanostructures on D-shaped optical fibers has a direct relationship to their transmission spectral characteristics as plasmonic devices.

Cite

CITATION STYLE

APA

Allsop, T., Neal, R., Kundrat, V., Wang, C., Mou, C., Culverhouse, P., … Webb, D. J. (2019). Low-dimensional nano-patterned surface fabricated by direct-write UV-chemically induced geometric inscription technique. Optics Letters, 44(2), 195. https://doi.org/10.1364/ol.44.000195

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free