Joint OSA-IPS Invited Speaker Series at Georgia Tech

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Event Details
  • Date/Time:
    • Wednesday June 7, 2017
      12:00 pm - 1:30 pm
  • Location: Marcus Nanotechnology Bldg, Room 1116-1118, 345 Ferst Dr NW, Atlanta, GA 30318
  • Phone:
  • URL: Marcus Nanotechnology Research Center
  • Email:
  • Fee(s):
    N/A
  • Extras:
    Free food
Contact

Tianren Fan

tianren.fan@gatech.edu

 

Summaries

Summary Sentence: Join us as Hoe Tan presents an overview of compound semiconductor nanowire research activities at The Australian National University.

Full Summary: No summary paragraph submitted.

Media
  • Dr. Hoe Tan Dr. Hoe Tan
    (image/png)

"Semiconductor nanowires for optoelectronic and energy applications"

 

Dr. Hoe Tan
Department of Electronic Materials Engineering
Research School of Physics and Engineering
The Australian National University
Canberra, ACT 2601, Australia
Email: hoe.tan@anu.edu.au
 

Abstract:


The excitement of nanowire research is due to the unique electronic and optical proper-ties of these nanostructures. Both axial and radial heterostructure nanowires have been pro-posed as nano-building blocks for the next generation devices, which are expected to revolu-tionise our technological world. The unique properties stem from their large surface area-to-volume ratio, very high aspect ratio, and carrier and photon confinement in two dimensions. These nanowires are usually grown by the so-called vapor-liquid-solid mechanism, which re-lies on a metal nanoparticle to catalyze and seed the growth. An alternative technique to grow the nanowires is by selective area growth technique, where a dielectric mask is first patterned on the substrate prior to growth.

In this talk, I will present an overview of compound semiconductor nanowire research activities at The Australian National University. The optical and structural properties of binary and ternary III-V nanowires including GaAs, InGaAs, InP and GaAsSb nanowires grown by metal- organic vapour phase epitaxy will be presented. Various issues such as tapering of the nanowires, compositional non-uniformity along nan-owires, crystal structure, carrier lifetime and polarization effect will be discussed. I will also present our results of III-V nanowires grown on Si substrates which are of great interests for the integration of nano-optoelectronic devices on Si platforms. Our results of enhancing the quantum efficiency of nanowires by using plasmonics are promising to improve the performance of nanowire devices. Finally, the results from our nanowire lasers, photo-detectors, solar cells and photoelectrodes for water splitting will be presented.


Bio:


Prof. Tan is currently the Head of the Department of Electronic Materials Engineering at the Research School of Physics and Engineering, The Australian National University. He received his B.E. (Hons) in Electrical Engineering from the University of Melbourne in 1992, after which he worked with Osram in Malaysia as a quality assurance engineer. In 1997, he was awarded the PhD degree from the Australian National University for his dissertation on "Ion beam effects in GaAs-AlGaAs materials and devices". He has been the past recipient of the Australian Research Council Postdoctoral, QEII and Future Fellowships. He has pub-lished/co-published over 350 journal papers, including four book chapters. He is also a co-inventor in 4 US patents related to laser diodes and infrared photodetectors. His research interests include epi-taxial growth of low-dimensional compound semiconductors, nanostructured optoelectronic devices and ion- implantation processing of compound semiconductors for optoelectronic device applications. Prof. Tan is a Senior Member of the IEEE.
 
If you wish to meet with the speaker, please contact Tianren at tianren.fan@gatech.edu.
 
Free pizza refreshments and drinks will be provided.

Additional Information

In Campus Calendar
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Groups

Georgia Tech Materials Institute

Invited Audience
Faculty/Staff, Public, Undergraduate students
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Status
  • Created By: Farlenthia Walker
  • Workflow Status: Draft
  • Created On: May 31, 2017 - 9:43am
  • Last Updated: May 31, 2017 - 9:43am