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7 Results for 'Other semiconductor technologies'
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Technology
Vanadium Dioxide Design Solution for Ultrafast Switches
The unique properties of vanadium dioxide (VO2) mean it could one day outperform silicon and enable next-generation, ultralow-power devices. A key advantage of this material is that above 341 kelvin �...
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Chang-Beom Eom, Daesu Lee | P170254US01
Technology
All-Glass Optical Microresonator for Single Molecule Spectroscopy and More
Label-free sensing methods could enable detection and characterization of chemical species at the single molecule level without the aid of probes or modifications to the target of interest. Such capab...
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Randall Goldsmith, Kassandra Knapper, Kevin Heylman | P150382US01
Technology
Microcavity Method for Single Molecule Spectroscopy
Single molecule spectroscopy and microscopy – a popular tool for biological, biophysical and chemical characterization – generally requires the use of fluorescent molecules. Researchers at UW–M...
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Randall Goldsmith, Kevin Heylman | P140153US03
Technology
Tuning Optical Microcavities
A whispering gallery mode (WGM) is a type of electromagnetic wave that travels around a concave surface. Such waves can propagate at the edge of a very small structure called an optical microcavity. W...
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Randall Goldsmith, Kevin Heylman | P140153US01
Technology
Method to Manage Active Leakage Power in Power Gated Integrated Circuits
Managing power consumption of integrated circuits such as microprocessors is important for conserving energy, improving battery life and reducing issues with device cooling. A common method to reduce ...
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Nam Sung Kim | P110120US01
Technology
Flexible Germanium Lateral PIN Diodes and 3-D Arrays for Photodetector Applications
Flexible single-crystalline semiconductors used in high-performance micro- and macro-electronics have been intensely studied in recent years. Thin-film transistors using single crystalline silicon, ...
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Zhenqiang Ma, Max Lagally, Hao-Chih Yuan | P09168US
Technology
Nanoelectromechanical Switch in Co-Planar Waveguide
Microelectromechanical systems (MEMS) and nanoelectromechanical systems (NEMS) have been used to create mechanical resonators for switching, filtering and other purposes in electrical systems. NEMS/ME...
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Robert Blick, Hua Qin, Hyun-Seok Kim | P07084US