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1 to 10 of 14 Results
Apr 11, 1999
Cwik, T.; Fernandez, S.; Ksendzov, A.; LaBaw, C.; Maker, P.; Muller, R., 1999, "Multi-Bandwidth Frequency Selective Surfaces for Near Infrared Filtering: Design and Optimization", https://hdl.handle.net/2014/16885, ['IEEE, 1999 Antenna & Propagation Society Symposium', 'Florida, USA'], JPL Open Repository
Frequency selective surfaces are widely used in the microwave and millimeter wave regions of the spectrum for filtering signals.
Apr 11, 1999
Cwik, T.; Klimeck, G., 1999, "Optimization of Microelectronic Devices for Sensor Applications", https://hdl.handle.net/2014/17134, ['Mtg: MNT 1999', 'Pasadena, California, USA'], JPL Open Repository
No abstract provided
Mar 6, 1999
Cwik, T.; Klimeck, G., 1999, "Integrated Design and Optimization of Microelectronic Devices", https://hdl.handle.net/2014/20788, ['IEEE Aerospace Conference', 'Snomass Aspen, CO, U.S.A.'], JPL Open Repository
A genetic algorithm is used for design of infrared filters and in the understanding of the material structure of a resonant tunneling diode. These two components are examples of microdevices and nanodevices that can be numerically simulated using fundamental mathematical and phys...
Jan 1, 1999
Cwik, T.; Yeh, C., 1999, "Highly Sensitive Quantum Well Infrared Photodetectors", https://hdl.handle.net/2014/17776, ['Journal of Applied Physics/Applied Physics Letters', 'USA'], JPL Open Repository
A fundametally new method for light coupling in quantum well infrared photodetectors that provides a 10-fold improvement over an optimized grating coupler is presented.
Nov 1, 1998
Klimeck, G.; Salazar-Lazaro, C.; Stoica, A.; Cwik, T., 1998, "Genetically Engineered Nanostructure Devices", https://hdl.handle.net/2014/20647, ['MTG: NASA - Nanospace 98', 'Houston, TX, U.S.A.'], JPL Open Repository
Material variations on an atomic scale enable the quantum mechanical functionality of devices such as resonant tunneling diodes (RTDs), quantum well infrared photodetectors (QWIPs), quantum well lasers, and heterostructure field effect transistors (HFETs).
Nov 1, 1998
Klimeck, G.; Salazar-Lazaro, C.; Stoica, A.; Cwik, T., 1998, ":Genetically Engineered" Nanostructure Devices", https://hdl.handle.net/2014/20626, ["MTG: Nanospace '98", 'Houston, TX, U.S.A.'], JPL Open Repository
No abstract provided
Oct 18, 1998
Klimeck, G.; Bowen, C.; Boykin, T.; Oyafuso, F.; Salazar-Lazaro, C.; Stoica, A.; Cwik, T., 1998, "Nanoelectronic Modeling at JPL", https://hdl.handle.net/2014/20646, ['DARPA ULTRA Review', 'Estes Park, CO, U.S.A.'], JPL Open Repository
The NASA/JPL goal to reduce payload in future space missions while increasing mission capability demands miniaturization of measurement, analytical and communication systems.
Oct 14, 1998
Klimeck, G.; Bowen, C.; Boykin, T.; Oyafuso, F.; Salazar-Lazaro, C.; Stoica, A.; Cwik, T., 1998, "The Nanoelectric Modeling Tool (NEMO) and Its Expansion to High Performance Parallel Computing", https://hdl.handle.net/2014/20484, ['MTG: 6th International Conference on Simulation of Devices and Technologies', 'Cape Town, South Africa'], JPL Open Repository
Material variations on an atomic scale enable the quantum mechanical functionality of devices such as resonant tunneling diodes (RTDs), quantum well infrared photodetectors (QWIPs), quantum well lasers, and heterostructure field effect transistors (HFETs).
Oct 14, 1998
Klimeck, G.; Bowen, C.; Boykin, T.; Oyafuso, F.; Salazar-Lazaro, C.; Stoica, A.; Cwik, T., 1998, "The Nanoeletronic Modelling Tool (NEMO) and Its Expansion to High Performance Parallel Computing", https://hdl.handle.net/2014/20406, ['International Conference on Simulation of Devices and Technologies', 'Cape Town, South Africa'], JPL Open Repository
The development of NEMO has benefited from the vast research on resonant tunneling diodes that had been done before the project.
Oct 1, 1998
Katz, D. S.; Cwik, T., 1998, "The Application of Beowulf-Class Computing to Computational Electromagnetics", https://hdl.handle.net/2014/20638, USA, JPL Open Repository
Current computational developments at the Jet Propulsion Laboratory (JPL) are motivated by the NASA/JPL goal of reducing payload in future space missions while increasing mission capability through miniaturization of active and passive sensors, analytical instruments and communic...
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