PHOTONICS TECHNOLOGIES IN THE OPTOELECTRONICS INDUSTRY SECTOR

Looking for a light-based technology in the Optoelectronics industry? Choose PhotonTransfer as your comprehensive source for photonics technologies in the Optoelectronics worldwide market. Check out the latest opportunities and new technologies in the Optoelectronics industrial sector. If you're a user, source manufacturer or a system supplier there is something here for you.

Listings

112 listings found
Ultra-Thin Silver Films for Optoelectronics Applications

ULTRA-THIN SILVER FILMS FOR OPTOELECTRONICS APPLICATIONS

Tech for Transfer

TTO

21-12-2015

A method of forming ultra-thin and smooth silver (Ag) films that overcomes the typical challenges associated with forming such films. Thin Ag films are used in optical metamaterials and as transparent conductors.

Thin-Film Materials
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Thin Films of Self-Aligned Carbon Nanotubes

THIN FILMS OF SELF-ALIGNED CARBON NANOTUBES

Tech for Transfer

TTO

15-01-2016

Methods of producing nematic domains of single-wall carbon nanotubes (SWNT) on a filter membrane using a vacuum filtration apparatus.

Nanophotonics   Thin-Film Materials
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One-Step Process for Producing Graphene

ONE-STEP PROCESS FOR PRODUCING GRAPHENE

Tech for Transfer

TTO

16-01-2016

Simple one-step process for producing graphene at relatively low temperatures around 650ÂșC, using remote plasma-enhanced chemical vapor deposition (PECVD) on various substrates. It enables full coverage of graphene over large areas within a few minutes, making it greener than other methods.

Thin-Film Materials
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Electron-Beam Lithography

ELECTRON-BEAM LITHOGRAPHY

Tech for Transfer

TTO

16-01-2016

Novel device to focus optical energy at nanoscale and locally excite electrons to form massively parallel electron beams, which can be used to perform maskless lithography in mass quantities.

Light-matter interactions   Nanophotonics   Optoelectronics
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High-Resolution Electrohydrodynamic Jet Printing

HIGH-RESOLUTION ELECTROHYDRODYNAMIC JET PRINTING

Tech for Transfer

TTO

16-01-2016

This new approach to e-jet printing produces a higher resolution using nozzles with much smaller internal diameters than previous methods.

Optical Components & Devices
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Direct Laser Welding of Metallic Nanowires

DIRECT LASER WELDING OF METALLIC NANOWIRES

Tech for Transfer

TTO

17-01-2016

Method combining roll-to-roll printing and high-speed direct laser welding for metal nanowire TCE film manufacturing.

Lasers   Nanophotonics
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MOSFET-Piezo-Gas Sensor Using Metal Oxide Nanostructures

MOSFET-PIEZO-GAS SENSOR USING METAL OXIDE NANOSTRUCTURES

Tech for Transfer

TTO

17-01-2016

A micro-integrated MOSFET (metal-oxide-semiconductor field transistor) piezo-gas sensor using metal oxide nanostructures such as ZnO and SnO.

Nanophotonics   Optical measurement systems & Sensors   Optoelectronics
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Wideband tunable laser linewidth reduction

WIDEBAND TUNABLE LASER LINEWIDTH REDUCTION

Tech for Transfer

TTO

17-01-2016

Electrical feed-forward scheme to reduce laser linewidth. The scheme detects phase noise in the laser output and feeds that forward to a phase modulator which corrects the laser output.

Lasers   Optoelectronics
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Dual Ring Silicon Electro-optical Modulator

DUAL RING SILICON ELECTRO-OPTICAL MODULATOR

Tech 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
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Ultrahigh bitrate optical pulses on photonic chips

ULTRAHIGH BITRATE OPTICAL PULSES ON PHOTONIC CHIPS

Tech for Transfer

TTO

17-01-2016

With the advent of ever faster telecommunication data rates, it is important to achieve clock speeds faster than 1 THz not limited by the optical pulse width, and to do so in a scalable approach. Soliton-effect pulse compression can offer a route to realize femtosecond pulses at multi-GHz repetition rates, in an integrated photonic chip. This invention provides an apparatus capable of generating optical pulses using photonic crystal waveguides on integrated circuits for optical communication applications at ultrahigh bitrates.

Photonic Crystals   Optical Communications
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EPIC
International Year of Light 2015