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Improved Manufacturing of Solid State Lasers via Patterning of Photonic Crystals
Technology Benefits
Improved performance of the laserImproved contact structures and reduced waveguiding loss by contact electrodesFabrication via one lithography step makes this invention easily manufacturable at low cost
Technology Application
Fiber optic networksInstrumentation lasersOptical spectroscopy This technology is available for licensing.
Detailed Technology Description
Researchers at UCSB have developed a method of fabricating solid state lasers with embedded structures for improved performance via patterning. The patterned layer(s) may be engineered to act as a mirror, optical confinement layer, grating, wavelength selective element, beam shaping element, etc. for the active layers. The primary advantage of this technology is that it provides for fabrication of all the needed functionality in one lithography step via patterning.
Supplementary Information
Patent Number: US7345298B2 Application Number: US200567957A Inventor: Weisbuch, Claude C. A. | David, Aurelien J. F. | Speck, James S. | DenBaars, Steven P. Priority Date: 28 Feb 2005 Priority Number: US7345298B2 Application Date: 28 Feb 2005 Publication Date: 18 Mar 2008 IPC Current: H01L002906 | H01L002100 US Class: 257013 | 257098 | 438029 | 438031 | 438032 Assignee Applicant: The Regents of the University of California Title: Horizontal emitting, vertical emitting, beam shaped, distributed feedback (DFB) lasers by growth over a patterned substrate Usefulness: Horizontal emitting, vertical emitting, beam shaped, distributed feedback (DFB) lasers by growth over a patterned substrate Novelty: Integrated optics structure e.g. laser, has multiple patterned layers deposited on top of buffer layer, and multiple active layers formed on patterned layers, where each patterned layer acts as mirror and optical confinement layer
Industry
Optics
Sub Group
LED/OLED
Application No.
7345298
Others
Background
There is a need to improve the performance of horizontal emitting, vertical emitting, beam shaped and distributed feedback lasers. Traditionally, photonic crystals placed on the surface of the devices have been used to improve performance.