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SYNCHRONIZABLE OPTOMECHANICAL OSCILLATORTech for Transfer TTO 18-01-2016 This invention provides an externally synchronizable optomechanical oscillator network. It demonstrates that two distinct silicon nitride micromechanical oscillators placed in a vacuum can be synchronized in both phase and frequency coupled only through an optical radiation field as opposed to coupling through a structural contact or electrostatic interaction. Synchronization is of great technological interest since it provides the basis for timing and navigation, signal processing, microwave communication, and could enable novel computing and memory concepts. Nanophotonics Optoelectronics Tell me more |
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HIGH-SPEED PHOTOTRANSISTOR IN A COMMERCIAL SIGE BICMOSTech for Transfer TTO 18-01-2016 This technology presents a novel high speed photodetector/receiver integrated in silicon-based commercial logic processes (BiCMOS) that provides higher performance at a lower cost than existing devices. SiGe phototransistors are constructed from modified SiGe heterojunction bipolar transistors (HBTs) with optical responsivity enhanced by transistor gain and SiGe's relatively shorter absorption depth. The inherent gain allows a boost in responsivity without fabrication of a thick device. Photodetection Tell me more |
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OPTOFLUIDIC DEVICE FOR RAPID SWITCHINGTech for Transfer TTO 18-01-2016 This technology presents a reconfigurable microfluidic optical device capable of rapid switching that can be used in optical logic and optical field programmable gate arrays. The approach focuses on coupling between liquid core waveguides and traditional solid core devices; taking advantage of the adaptability of the former and the advanced functionality of the latter. Optoelectronics Waveguides Optofluidics Tell me more |
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INTEGRATED ULTRALOW-LATENCY PHOTONIC NETWORK FOR COMPUTING SYSTEMSTech for Transfer TTO 18-01-2016 A technology which leverages the inherent capacity advantage of optics (via wavelength division multiplexing) to not only reach high bandwidths, but to simplify network design. Optical Computing Optoelectronics Tell me more |
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PHOTONIC PARAMETRIC AMPLIFIER, OSCILLATOR AND WAVELENGTH CONVERTERTech for Transfer TTO 18-01-2016 Compact all-silicon photonic integrated circuit that amplifies optical signals and can generate multiple wavelength channels using a single pump laser. Lasers Optical Computing Optical Communications Tell me more |
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SILICON MICRORING RESONATORS FOR ULTRA LOW-POWER OPTICAL INTERCONNECTSTech for Transfer TTO 18-01-2016 Complete passive thermal compensation of a silicon microring resonator, using a new design for a Mach-Zehnder interferometer with self-restoring thermal phase shifts. Optical Components & Devices Optical Computing Optoelectronics Semiconductors Tell me more |
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HIGH-SPEED, LOW-POWER ELECTRO-OPTIC SWITCHTech for Transfer TTO 19-01-2016 Electro-optic switch based on a ring resonator with a PIN junction, resulting in low power requirements and very fast switching speeds. Quantum Optics Optoelectronics Tell me more |
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ORGANIC ELECTRO-OPTIC CHROMOPHORES WITH SUPERIOR HYPERPOLARIZABILITYTech for Transfer TTO 20-01-2016 A series of unconventional electro-optic chromophores for use in optoelectronic and photonic technologies such as high-speed optical communications, integrated optics and optical data processes and storage. Glass & other optical materials Optical Computing Optoelectronics Tell me more |
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NEW PHOTONIC SOLIDS SLOW DOWN LIGHT FOR OPTICAL APPLICATIONSTech for Transfer TTO 20-01-2016 New photonic band gap materials (called hyperuniform non-crystalline solids) that are insensitive to light propagation direction and capable of slowing down light which can be useful for thermal absorbers and sensors. Glass & other optical materials Photonic Crystals Tell me more |
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ELECTROMAGNETICALLY-INDUCED TRANSPARENCY IN PHOTONIC CRYSTALS OPENS DOOR TO ALL-OPTICAL COMPUTERSTech for Transfer TTO 21-01-2016 Electro-magnetically induced transparency is used as the non-linear medium in photonic crystal cavities to obtain devices with extreme non-linear sensitivity and operating power much lower than conventional non-linear optics systems. Non-Linear Optics Photonic Crystals Tell me more |

