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Curved grating fabrication techniques for concentric-circle grating, surface-emitting semiconductor lasersWe describe the fabrication and operational characteristics of a novel, surface-emitting semiconductor laser that makes use of a concentric-circle grating to both define its resonant cavity and to provide surface emission. A properly fabricated circular grating causes the laser to operate in radially inward- and outward-going circular waves in the waveguide, thus, introducing the circular symmetry needed for the laser to emit a beam with a circular cross-section. The basic circular-grating-resonator concept can be implemented in any materials system; an AlGaAs/GaAs graded-index, separate confinement heterostructure (GRINSCH), single-quantum-well (SQW) semiconductor laser, grown by molecular beam epitaxy (MBE), was used for the experiments discussed here. Each concentric-circle grating was fabricated on the surface of the AlGaAs/GaAs semiconductor laser. The circular pattern was first defined by electron-beam (e-beam) lithography in a layer of polymethylmethacrylate (PMMA) and subsequently etched into the semiconductor surface using chemically-assisted (chlorine) ion-beam etching (CAIBE). We consider issues that affect the fabrication and quality of the gratings. These issues include grating design requirements, data representation of the grating pattern, and e-beam scan method. We provide examples of how these techniques can be implemented and their impact on the resulting laser performance. A comparison is made of the results obtained using two fundamentally different electron-beam writing systems. Circular gratings with period lambda = 0.25 microns and overall diameters ranging from 80 microns to 500 microns were fabricated. We also report our successful demonstration of an optically pumped, concentric-circle grating, semiconductor laser that emits a beam with a far-field divergence angle that is less than one degree. The emission spectrum is quite narrow (less than 0.1 nm) and is centered at wavelength lambda = 0.8175 microns.
Document ID
19940012876
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Jordan, Rebecca H.
(Rochester Univ. NY, United States)
King, Oliver
(Rochester Univ. NY, United States)
Wicks, Gary W.
(Rochester Univ. NY, United States)
Hall, Dennis G.
(Rochester Univ. NY, United States)
Anderson, Erik H.
(International Business Machines Corp. Yorktown Heights, NY., United States)
Rooks, Michael J.
(Cornell Univ. Ithaca, NY., United States)
Date Acquired
September 6, 2013
Publication Date
August 1, 1993
Publication Information
Publication: NASA. Marshall Space Flight Center, Conference on Binary Optics: An Opportunity for Technical Exchange
Subject Category
Lasers And Masers
Accession Number
94N17349
Funding Number(s)
CONTRACT_GRANT: NSF ECS-91-12973
CONTRACT_GRANT: NSF ECS-86-19049
CONTRACT_GRANT: DE-AC03-76SF-00098
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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