LICENSING IN THE PHOTONICS INDUSTRY

This Exchange can be done through a licensing agreement as a partnership to authorize to use the license of the technology in exchange for an agreed payment (fee or royalty).

Listings

473 listings found
Photonic Parametric Amplifier, Oscillator and Wavelength Converter

PHOTONIC PARAMETRIC AMPLIFIER, OSCILLATOR AND WAVELENGTH CONVERTER

Tech 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
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Silicon Microring Resonators for Ultra Low-power Optical Interconnects

SILICON MICRORING RESONATORS FOR ULTRA LOW-POWER OPTICAL INTERCONNECTS

Tech 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
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Optofluidic Dye Laser for Efficient Energy Harvesting

OPTOFLUIDIC DYE LASER FOR EFFICIENT ENERGY HARVESTING

Tech for Transfer

TTO

18-01-2016

Bio-inspired optofluidic dye laser based on DNA scaffolds with an extremely efficient energy transfer even when using an unusually low acceptor concentration.

Biophotonics   Lasers   Optical measurement systems & Sensors
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Converting CO2 into Biofuel using Algae and Optical Fibers

CONVERTING CO2 INTO BIOFUEL USING ALGAE AND OPTICAL FIBERS

Tech for Transfer

TTO

18-01-2016

Photobioreactor for converting CO2 directly into biofuel that uses evanescent-light excitation of photosynthetic algae grown around optical fibers.

Biophotonics   Fiber Optics   Optical Engineering
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Nanoimprinting Process for Silk Photonic Crystals

NANOIMPRINTING PROCESS FOR SILK PHOTONIC CRYSTALS

Tech for Transfer

TTO

18-01-2016

Processing of a biopolymer into photonic structures using nanocontact imprinting for the realization of entirely organic biophotonic nanomaterials and devices.

Biophotonics   Nanophotonics   Photonic Crystals
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CMOS-Integrable Photodiode in PolySilicon

CMOS-INTEGRABLE PHOTODIODE IN POLYSILICON

Tech 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
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HIgh-Speed, Low-Power Electro-Optic Switch

HIGH-SPEED, LOW-POWER ELECTRO-OPTIC SWITCH

Tech 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
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Versatile Technique for Growing Single-Layer Nanostructures

VERSATILE TECHNIQUE FOR GROWING SINGLE-LAYER NANOSTRUCTURES

Tech 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
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Optically Controlled Photonic Switch

OPTICALLY CONTROLLED PHOTONIC SWITCH

Tech for Transfer

TTO

19-01-2016

A fast, all optical switch on silicon using highly light-confining resonating structures to enhance the sensitivity of light to small changes in refractive index.

Non-Linear Optics   Quantum Optics   Optoelectronics   Semiconductors
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Wafer-Scale Bilayer Graphene

WAFER-SCALE BILAYER GRAPHENE

Tech for Transfer

TTO

19-01-2016

This technology presents a method of producing uniform multilayer graphene films that are greater than a square centimeter in area. Multilayer graphene is deposited by a single CVD process, eliminating the need to produce multiple separate monolayers followed by stacking. With this method, the size of fabricated bilayer graphene film is only limited by the synthesis apparatus, and can be readily scaled up, enabling wafer-scale graphene electronics and photonics.

Thin-Film Materials
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EPIC
International Year of Light 2015