Friday, June 2, 2017

Monday, May 29, 2017 (all day) to Friday, June 9, 2017 (all day) to Fri, 06/09/2017 (All day)
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Join us at the Institute for Quantum Computing for a two-week introduction to the theoretical and experimental study of quantum information processing.

Friday, June 2, 2017 — 11:45 to 11:45 AM EDT

Simulation of III-V Nanowires for Infrared Photodetection

Khalifa M. Azizur-Rahman, McMaster University

The absorptance in vertical nanowire (nw) arrays is typically dominated by three optical phenomena: radial mode resonances, near-field evanescent wave coupling, and Fabry–Perot (F-P) mode resonances. The contribution of these optical phenomena to GaAs, InP and InAs nw absorptance was simulated using the finite element method. The study compared the absorptance between finite and semi-infinite nws with varying geometrical parameters, including the nw diameter (D), array period (P), and nw length (L).

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