Looking for a light-based technology using Semiconductors as Technology source? Choose PhotonTransfer as your comprehensive source for photonics technologies related to Semiconductors . Check out the latest opportunities and new technologies involved in the development of Semiconductors . If you're a physicist, engineer, applied scientist, company or product developer there is something here for you.
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CHEMICAL ANCHORING OF CARBON NANOTUBE STRUCTURESTech for Transfer TTO 19-12-2015 Method of anchoring and growing carbon nanotube structures on various substrates coated with thin layers of metal as gold, silver, and copper. Semiconductors Metamaterials Tell me more |
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IMPROVING POROUS SILICON FOR SENSOR APPLICATIONSTech for Transfer TTO 19-12-2015 Porous silicon (PS) has many potential applications in displays, sensors, microelectronics, optics, and optoelectronics because of its photoluminescence and related properties. Optical Components & Devices Semiconductors Tell me more |
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QUANTUM DOT VISIBLE LASERTech for Transfer TTO 21-12-2015 This invention introduces a quantum dot laser capable of emitting at a single wavelength within the visible region. Direct semiconductor visible laser diodes are smaller, cheaper and more efficient than other visible lasers. The emission wavelength comes determined by the specific configuration of quantum dots. A quantum dot layer structure, including one or more layers of InGaN/GaN quantum dots, is used to form a laser active region producing the output emission. InGaN/GaN quantum dots can be formed by self-organization, nano-patterning, or quantum well/barrier interface roughness. Lasers Semiconductors Quantum Dots Tell me more |
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DUAL RING SILICON ELECTRO-OPTICAL MODULATORTech for Transfer TTO 17-01-2016 Novel dual ring structure with two p-doped ring waveguides on a surface, separated and bordered by n-doped regions. Optical Components & Devices Optical Engineering Semiconductors Waveguides Tell me more |
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CMOS PLENOPTIC DETECTOR FOR LED APPLICATIONSTech for Transfer TTO 17-01-2016 This invention provides a new CMOS-compatible plenoptic (angle and wavelength) detector for LED lighting applications. The sensor has both high spectral and angular resolution. Furthermore, such a sensor can be based on a scalable silicon IC platform to meet mass-market cost targets, have a low profile for broad installation flexibility, and does not have any moving parts such as a grating rotation for manufacturing and operational simplicity and robustness. Semiconductors Waveguides Photodetection Tell me more |
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HIGHLY CONDUCTIVE SEMICONDUCTOR ELECTRODES FOR OPTICAL COMMUNICATIONSTech for Transfer TTO 18-01-2016 Electron injection was applied for the first time to optical components for the production of silicon modulators with a frequency of up to 100 GHz (3 dB bandwidth). Optoelectronics Semiconductors Optical Communications Electrochemistry Tell me more |
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ELECTRO-OPTIC SWITCH WITH ULTRA LOW VOLTAGE OPERATIONTech for Transfer TTO 18-01-2016 Electro-optic device that can be tuned over a very broad range of wavelengths using a few mW of optical control signal power. Nanophotonics Optoelectronics Semiconductors 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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CMOS-INTEGRABLE PHOTODIODE IN POLYSILICONTech for Transfer TTO 19-01-2016 CMOS-compatible photodiode in polycrystalline silicon eliminates the need for expensive silicon-on-insulator wafers and the complexity of integrating germanium on silicon. Optical measurement systems & Sensors Semiconductors Photodetection Tell me more |
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VERSATILE TECHNIQUE FOR GROWING SINGLE-LAYER NANOSTRUCTURESTech for Transfer TTO 19-01-2016 This technology presents a rapid and versatile method of growing epitaxial silicon on top of single-crystal substrates. This method combines soft-matter self-assembly with pulsed laser irradiation to direct and design intricate complex nanopatterned crystalline inorganic materials that can be used in optoelectronic applications such as sensors, catalysis, and energy conversion. Nanophotonics Semiconductors Thin-Film Materials Tell me more |

