Nasdaq
Managing Director, Listings and Corporate Services
Nasdaq
Director- Corporate Advisory Services
Thomson Reuters Apr 2011 - Jun 2013
Analyst
Thomson Reuters Nov 2010 - Apr 2011
Markets- Corporate Business Intelligence
Jpmorgan Chase & Co. Oct 2010 - Dec 2010
Spring Analyst
Education:
Arizona State University, Barrett the Honors College 2012
Arizona State University, Barrett the Honors College 2011
White Plains Senior High School
Arizona State University
Bachelors, Bachelor of Science, Anthropology
Arizona State University College of Liberal Arts and Sciences
Bachelors, Bachelor of Science, Behavioural Science
Skills:
Valuation Equities Market Analysis Financial Markets Capital Markets Real Estate Financial Analysis Mergers and Acquisitions Equity Research Management Financial Modeling Mergers Due Diligence Sales Investments Analysis Powerpoint Financial Services
Interests:
Writing Eating Kickboxing Economic Empowerment Traveling See Less History Reading See 3 Animal Rights Music Sports Stock Picking Animal Welfare Antiques Movies Batman
Leonid Polonskiy - Westwood NJ, US Vladimir Yankov - Washington Twp. NJ, US Michael Spector - Hackensack NJ, US Andrei Talapov - Tenafly NJ, US Sergey Babin - Castro Valley CA, US Alexander Goltsov - Paramus NJ, US Anatoli Morozov - Hightstown NJ, US Natalya Polonskaya - Westwood NJ, US
Assignee:
Vyoptics, Inc. - Allendale NJ
International Classification:
G02B006/26 G02B006/293
US Classification:
385/015000, 385/027000, 385/039000, 385/024000
Abstract:
The present invention provides a photonic multi-bandgap structure, herein also referred to as photonic bandgap quasi-crystal (“PBQC”), that can direct light, having wavelength components within a selected passband (), from an input port, to a predefined output port, while providing an integrating element for Planar Lightwave Circuits. A photonic bandgap quasi-crystal of the invention combines in a planar waveguide spectrally selective properties of gratings, focusing properties of elliptical mirrors, superposition properties of thick holograms, photonic bandgaps of periodic structures, and flexibility of binary lithography. A photonic structure of the invention can be utilized, for example, as an integrating spectrally sensitive element in a variety of optical devices that can include, but are not limited to, optical switches, optical multiplexer/demultiplexers, multi-wavelength lasers, and channel monitors in Wavelength Division Mulitplexing (WDM) telecommunications system.
Plana Holographic Multiplexer/Demultiplexer Utilizing Photonic Bandgap Quasi-Crystals With Low Intrinsic Loss And Flat Top Passband
Vladimir Yankov - Washington Twp. NJ, US Igor Ivonin - Uppsala, SE Michael Spector - Hackensack NJ, US Andrei Talapov - Tenafly NJ, US Leonid Polonskiy - Westwood NJ, US Sergey Babin - Castro Valley CA, US Alexander Goltsov - Paramus NJ, US Vladimir Goloviznine - Nieuwegein, NL Anatoli Morozov - Hightstown NJ, US Natalya Polonskaya - Westwood NJ, US
International Classification:
G02B006/34 G02B006/293
US Classification:
385/037000, 385/024000
Abstract:
A MUX, DEMUX or integrated combination MUX/DEMUX utilizing a discrete dispersion device (herein referred to as “D” device), which includes at least one input port, at least one output port and an optical planar waveguide comprising a synergetic photonic bandgap quasi-crystal (“PBQC”) for guiding and supporting optical signals in a work bandwidth. The Ddevice achieves a flat-top response for each channel, high channel isolation and background noise suppression.
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