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Lay Kee Ang
Also published under:L. K. Ang, Lay-Kee Ang
Affiliation
Science and Math Pillar, Singapore University of Technology and Design, Singapore
Topic
Field Emission,2D Materials,Space Charge Limited Current,Electron Emission,Density Functional Theory,Field Emission Current,Thermionic Emission,Band Structure,Carrier Mobility,Charge Injection,Circuit Model,Density Functional Theory Simulations,Dielectric Breakdown,Electrode,Emission Model,Equivalent Circuit Model,Fractal Dimension,Frequency Selective Surface,Full-wave Simulation,Graphene,High Voltage,Metal Strips,Printed Circuit Board,Reflectance Bands,Semiconductor Devices,Singular Equations,Singular Integral,Transition Metal Dichalcogenides,Vacuum Tubes,2D Model,2D Thin Films,Absorption Band,Active Frequency Selective Surface,Air Pollution Control,Angular Frequency,Anode Materials,Archetype,Atomic System,Bader Charge,Ballistic Regime,Band Alignment,Band Offset,Blue Cross,Bulk Metal,Bulk Semiconductors,Carrier Density,Cavity Length,Charge Carriers,Charge Transport,Chebyshev Polynomials,
Biography
Lay Kee Ang received the B.S. degree from National Tsing Hua University, Hsinchu, Taiwan, in 1994, and the M.S. and Ph.D. degrees in nuclear engineering and plasma physics from the University of Michigan, Ann Arbor, MI, USA, in 1996 and 1999, respectively.
He is currently the Head of Science and Math, the Interim Head of Pillar of EPD, and an Ng Teng Fong Chair Professor with the Singapore University of Technology and Design, Singapore. His current research interests include the development of theoretical scaling laws and models that are able to capture the essential physics in any interesting problems with a strong focus on the physics and applications of charge particles (electrons), and photons (laser and electromagnetic wave) with 2-D materials and plasma.
He is currently the Head of Science and Math, the Interim Head of Pillar of EPD, and an Ng Teng Fong Chair Professor with the Singapore University of Technology and Design, Singapore. His current research interests include the development of theoretical scaling laws and models that are able to capture the essential physics in any interesting problems with a strong focus on the physics and applications of charge particles (electrons), and photons (laser and electromagnetic wave) with 2-D materials and plasma.