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SUMMARY:Spring 2025 Education Resource Fair
DESCRIPTION:This one-stop event is for students\, job seekers\, educators\, and community members looking to connect with valuable educational resources and career opportunities. Whether you’re exploring academic programs\, seeking professional development\, or on the hunt for your next job\, this event has something for everyone. You’ll meet representatives; discover job openings; access career coaching\, résumé help\, and job application tips; and network with professionals and community leaders. \nThis event is geared especially toward education/children and youth studies students\, job seekers and career changers\, educators and school counselors\, and anyone interested in lifelong learning and growth. \nJoin the Zoom meeting
URL:https://www.brooklyn.edu/event/spring-2025-education-resource-fair/
LOCATION:Zoom
CATEGORIES:Magner Career Center
ORGANIZER;CN="Magner Career Center":MAILTO:careernews@brooklyn.cuny.edu
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SUMMARY:Engineering the Nanoscale via Modification of the Local Energy Environment
DESCRIPTION:Neno Fuller\, Department of Physics & Astronomy\, University of Kansas \nJoin us on Zoom\, April 3\, 12:25-1:15 p.m. \nAbstract: Van der Waals (vdW) 2D heterostructures are a promising platform for harnessing interlayer excitons (IXs).Typically\, moiré superlattices in twisted 2D/2D heterostructures create a periodic energy landscape for IXs. This study presents an alternative method for creating a superlattice potential using a periodic array of “up” and “down” molecular dipoles. Our approach involves growing a few layers of titanyl phthalocyanine (TiOPc) molecules on a monolayer of molybdenum disulfide (MoS2) through vdW epitaxy. Angle-resolved photoemission (ARPES) measurements indicate band narrowing in MoS2 after molecule deposition. Moreover\, time-resolved two-photon photoemission spectroscopy (TR-TPPE) reveals two long-lived IX states with an energy difference of approximately 0.1 eV\, attributed to IX’s localization at “up” and “down” dipole sites. Density functional theory calculations indicate that this energy difference is consistent with the electrostatic potential modulation induced by the TiOPc bilayer. Because the symmetry and the period of this potential superlattice can be changed readily by using molecules of different shapes and sizes\, molecule/2D heterostructures can be promising platforms for designing artificial exciton and electron lattices\, which can be useful for hosting many-body phases such as the Bose-Einstein condensate. \nRegister here.
URL:https://www.brooklyn.edu/event/physics-colloquium-with-neno-fuller/
LOCATION:Zoom
CATEGORIES:Physics,School of Natural and Behavioral Sciences
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