The patent badge is an abbreviated version of the USPTO patent document. The patent badge does contain a link to the full patent document.

The patent badge is an abbreviated version of the USPTO patent document. The patent badge covers the following: Patent number, Date patent was issued, Date patent was filed, Title of the patent, Applicant, Inventor, Assignee, Attorney firm, Primary examiner, Assistant examiner, CPCs, and Abstract. The patent badge does contain a link to the full patent document (in Adobe Acrobat format, aka pdf). To download or print any patent click here.

Date of Patent:
Apr. 29, 1997

Filed:

Dec. 19, 1994
Applicant:
Inventors:

Katsumi Mori, Suwa, JP;

Tatsuya Asaka, Suwa, JP;

Hideaki Iwano, Suwa, JP;

Assignee:
Attorney:
Primary Examiner:
Assistant Examiner:
Int. Cl.
CPC ...
H01S / ;
U.S. Cl.
CPC ...
372 96 ; 372 45 ; 372 46 ;
Abstract

A surface emitting semiconductor laser, with a resonator cavity transverse to the planar extent of the deposited layers, is provided with a first reflection mirror on the substrate side composed of alternating layers comprising a first layer that is made of a Group III-V compound semiconductor and a second layer that is made of a Group III-V compound semiconductor with an energy bandgap that is larger than that of the first layer. A second reflection mirror is provided at the opposite end of the cavity adjacent to a column like resonator portion. At least the first reflection mirror comprises a distributive Bragg reflection (DBR) multiple layer mirror that has an interface region between first and second layers having a carrier concentration that is higher than that of other regions. The column like resonator portion is surrounded by a buried layer which may consist of two layers, the first layer functioning as barrier layer and the second layer functioning as a flattening layer. The first layer may be comprised of a silicon compound and the second layer may be comprised of SOG or a resin compound. The multiple layer band structure of the DBR mirror is improved, current easily flows vertically through the multiple layers and the element resistance is low. In addition, a simple and reliable method is employed to fabricate the DBR mirror and the dual buried layer, respectively, because the doping concentration is controlled through dopant gas flow control or is controlled through light and can be easily accomplished without using comparatively high temperature processing.


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