Invention Grant
US07949028B2 Method of tuning a semiconductor laser device having coupled cavities
有权
调谐具有耦合腔的半导体激光器件的方法
- Patent Title: Method of tuning a semiconductor laser device having coupled cavities
- Patent Title (中): 调谐具有耦合腔的半导体激光器件的方法
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Application No.: US12895971Application Date: 2010-10-01
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Publication No.: US07949028B2Publication Date: 2011-05-24
- Inventor: Alan R. Sugg , David S. McCallum
- Applicant: Alan R. Sugg , David S. McCallum
- Applicant Address: US IL West Chicago
- Assignee: Vega Wave Systems, Inc.
- Current Assignee: Vega Wave Systems, Inc.
- Current Assignee Address: US IL West Chicago
- Agency: Patzik, Frank & Samotny Ltd.
- Main IPC: H01S3/10
- IPC: H01S3/10 ; H01S5/00

Abstract:
An array of optically coupled cavities (called micro-cavities) of a semiconductor laser are defined by either an etch and/or by a native oxide of an aluminum-bearing III-V semiconductor material and are arranged serially end-to-end along the longitudinal direction. An etch and/or native oxide defines a refractive index change for the longitudinal optical mode and confines the optical field within the micro-cavities, resulting in reflection and optical feedback distributed periodically along the laser stripe in the form of an optically coupled micro-cavity. The wavelength of emission of the laser is controlled by a combination of the length of the optical micro-cavities and the spacing between adjacent optical micro-cavities. Single-longitudinal-mode operation is exhibited over an extended drive current range. In one embodiment, two or more linear arrays of end-coupled micro-cavities are arranged in the longitudinal axis of the laser cavity to obtain a tunable laser. The device, with multiple reflectors constructed out of optical micro-cavities, is tuned either thermally or by current injection partitioned among the elements. The tunable laser exhibits a vernier tuning amongst resonances of the two or more optically-coupled micro-cavities.
Public/Granted literature
- US20110019702A1 METHOD OF TUNING A SEMICONDUCTOR LASER DEVICE HAVING COUPLED CAVITIES Public/Granted day:2011-01-27
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