BEGIN:VCALENDAR VERSION:2.0 PRODID:-//International MOVE Community Outreach - ECPv6.3.5//NONSGML v1.0//EN CALSCALE:GREGORIAN METHOD:PUBLISH X-ORIGINAL-URL:https://move.ieee.org X-WR-CALDESC:Events for International MOVE Community Outreach REFRESH-INTERVAL;VALUE=DURATION:PT1H X-Robots-Tag:noindex X-PUBLISHED-TTL:PT1H BEGIN:VTIMEZONE TZID:UTC BEGIN:STANDARD TZOFFSETFROM:+0000 TZOFFSETTO:+0000 TZNAME:UTC DTSTART:20220101T000000 END:STANDARD END:VTIMEZONE BEGIN:VEVENT DTSTART;TZID=UTC:20220517T140000 DTEND;TZID=UTC:20220517T150000 DTSTAMP:20240328T204631 CREATED:20220419T062717Z LAST-MODIFIED:20220511T133747Z UID:1358-1652796000-1652799600@move.ieee.org SUMMARY:IEEE Distinguished Lecture - "Computational Nanophotonics: Basics\, Challenges and Future Perspectives" by Prof. Salah Obayya DESCRIPTION:Nanophotonics modelling for 21St century applications is becoming vital. The computational modeling provides a fundamental understanding of the relying physics behind the operation of photonic devices. However\, computational modeling is still a challenge as some of the existing modeling techniques fail to capture the correct behavior of nano-photonic devices. In this regard\, this talk will introduce an overview of the existing computational modeling tools for analyzing photonic devices\, in general\, and highlighting their salient features and shortcomings. It is well known that “plasmonics” plays a vital role now in localising the optical field beyond the diffraction limit and hence in integrated optics. Therefore\, the talk will focus on plasmonics modeling issues and the failure of the classical electromagnetic solvers to accurately characterize the nano-plasmonic devices. Therefore\, new accurate and stable beam propagation method will be introduced for analyzing plasmonics in the classical regime. The rigor of this approach is mainly because of relying on the finite elements method and the twice faster Blocked Schur algorithm which can exactly represent all the wide spectrum of radiation\, evanescent\, and surface modes produced by the strong discontinuity between metal and its surroundings. Moreover\, in merging quantum plasmonic devices\, it becomes essential to introduce “Quantum Corrected Model (QCM)” in order to accurately model these devices\, and the basics of QCM will be also discussed. Speaker(s): Prof. Salah Obayya\, Room: MC603\, McConnell Engineering building\, 3480 University Street\, H3A 0E9\, Montreal\, Quebec\, Canada\, Virtual: https://events.vtools.ieee.org/m/312225 URL:https://move.ieee.org/event/ieee-distinguished-lecture-computational-nanophotonics-basics-challenges-and-future-perspectives-by-prof-salah-obayya/ LOCATION:Room: MC603\, McConnell Engineering building\, 3480 University Street\, H3A 0E9\, Montreal\, Quebec\, Canada\, Virtual: https://events.vtools.ieee.org/m/312225 END:VEVENT END:VCALENDAR