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TECHNICAL PROGRAM THURSDAY 27 SEPTEMBER<br />
GRAND BALLROOM F GRAND BALLROOM G HARBOUR ROOM A GRAND BALLROOM A<br />
Arlington, Arlington, TX, USA<br />
We report a polydimethylsiloxane PDMS<br />
nanomembrane transfer printing technique for an<br />
optically-pumped ultra-compact membrane<br />
reflector VCSEL on silicon, with transfer printed<br />
InGaAsP QW sandwiched in between two singlelayer<br />
Fano resonance Si photonic crystal<br />
nanomembrane reflectors.<br />
ThDD5 4:45 PM - 5:15 PM (Invited)<br />
Fiber Bragg Sensors Made with IR<br />
Femtosecond Radiation, S. Mihailov,<br />
Communications Research Centre, Ottawa, ON,<br />
Canada<br />
Fiber Bragg grating (FBG) sensors have become<br />
a mainstream sensing technology. High temperature<br />
stable gratings based on femtosecond<br />
infrared laser writing have been used in extreme<br />
environments such as high temperature, pressure<br />
or ionizing radiation.<br />
ThFF6 4:45 PM - 5:00 PM<br />
Modal Analysis of a Novel Nanophotonic<br />
Plasmon Hollow Waveguide, F. Dell’Olio,<br />
C. Ciminelli and M. Armenise, Politecnico di<br />
Bari, Bari, Italy<br />
A novel nanophotonic hollow waveguide has<br />
been accurately investigated. Waveguide modal<br />
properties and performance have been evaluated<br />
by the 3D Finite Element Method. Potential<br />
applications have been envisaged.<br />
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Join us next year!<br />
<strong>IEEE</strong> <strong>Photonics</strong> 2013<br />
Bellevue Washington, USA<br />
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