摘要:
The disclosure is directed to an improved semiconductor laser device which includes a first light deriving optical waveguide connected approximately perpendicularly to a light exit face at one side, a second light deriving optical waveguide connected approximately perpendicularly to another light exit face at the other side and having an optical axis different from that of the first light deriving optical waveguide, and a light emitting optical waveguide subjected to optical coupling with a periodical diffraction grating for optical resonance, and connected to end portions of the first and second light deriving optical waveguides within the semiconductor laser device.
摘要:
A semiconductor laser includes a current blocking layer formed on a substrate, a first cladding layer formed on the current blocking layer, an active layer formed on the first cladding layer, and a second cladding layer formed on the active layer. An indent is formed in the current blocking layer near the center of the laser element, and a V-shaped groove is formed in the current blocking layer across the indent. A gain guide structure is formed where the indent is formed, and an index guide structure is formed near the cleaved facet. A stable transverse mode laser emission is ensured without the influence of the return beam reflected from the disc surface, and the attendant mode competition noise is reduced.
摘要:
A V-channeled substrate inner strip (VSIS) semiconductor laser includes a p-Ga.sub.1-31 y Al.sub.y As active layer sandwiched between a P-Ga.sub.1-x Al.sub.x As first cladding layer and an n-Ga.sub.1-x Al.sub.x As second cladding layer. The AlAs mole fraction x of the first and second cladding layers is selected between about 0.45 and 0.52 in order to minimize the mode competition noise at an operating temperature. In a preferred form, the cavity length is longer than 300 .mu.m so as to minimize the occurrence of the mode competition noise at the operating temperature. Furthermore, the reflectivity R.sub.1 of the front facet and the reflectivity R.sub.2 of the rear facet are selected to satisfy the condition 0.1.ltoreq.ln(1/R.sub.1 .multidot.R.sub.2).ltoreq.1.
摘要:
A semiconductor laser device comprises a laminated crystal structure which includes a Ga.sub.1-y Al.sub.y As optical guiding layer and a Ga.sub.1-z Al.sub.z As (z>y) cladding layer in this sequence, the cladding layer is formed on both a Ga.sub.1-x Al.sub.2 As (0.ltoreq.x.ltoreq.0.1 and x
摘要翻译:半导体激光器件包括依次包括Ga1-yAlyAs光导层和Ga1-zAlzAs(z> y)包覆层的层压晶体结构,在Ga 1-x Al 2 As(z) x <= 0.1和x
摘要:
An index guided semiconductor laser device comprising a striped optical waveguide in the active layer, at least a part of the wavegide having continuous indentations at the interface between the waveguide and the outside of the waveguide, whereby only laser light of a high-order transverse mode is radiated from the waveguide to the outside of the waveguide and only laser light of the fundamental transverse mode is propagated within the waveguide.
摘要:
A method for producing a semiconductor laser device having a buried heterostructure includes a multi-layered crystal structure, containing an active layer for laser oscillation, on a p-substrate, said multi-layered crystal structure having a striped mesa-portion, a p-n-p multi-layered structure surrounding said mesa-portion and a burying layer disposed on an upper face of said striped mesa-portion. The unique structure results in a heterojunction at each of both side faces of said active layer in said mesa-portion.
摘要:
A semiconductor laser device comprising a GaAlAs first cladding layer, a Ga.sub.1-x Al.sub.x As (0.ltoreq.x.ltoreq.0.4) active layer for laser oscillation, an In.sub.1-y Ga.sub.y P.sub.1-z As.sub.z (z=2.04y-1.04, and 0.ltoreq.z.ltoreq.1) optical guiding layer with a diffraction grating thereon, a GaAlAs buffer layer disposed between said active layer and said optical guiding layer, and a GaAlAs second cladding layer, the width of the forbidden band of said buffer layer being greater than that of the active layer and smaller than that of the optical guiding layer.
摘要翻译:包括GaAlAs第一包层,用于激光振荡的Ga1-xAlxAs(0≤x≤0.4)有源层,In1-yGayP1-zAsz(z = 2.04y-1.04和0)的半导体激光器件, = z 1)具有衍射光栅的光导层,设置在所述有源层和所述光导层之间的GaAlAs缓冲层和GaAlAs第二包层,所述缓冲层的禁带的宽度更大 比活性层的厚度小,而且比光导层的面积小。
摘要:
A semiconductor laser device for laser oscillation at a wavelength in the range of from 660 nm to 890 nm which includes an active layer of Ga.sub.1-x Al.sub.x As (0.ltoreq.x.ltoreq.0.4) or In.sub.1-y Ga.sub.y P.sub.1-z As.sub.z (0.51.ltoreq.y.ltoreq.1, 0.ltoreq.z.ltoreq.1, and z=2.04y-1.04) and a layer with a diffraction grating thereon of In.sub.1-y Ga.sub.y P.sub.1-z As (z=2.04y-1.04) which is adjacent to the active layer.
摘要翻译:用于在660nm至890nm范围内的波长的激光振荡的半导体激光器件,其包括Ga1-xAlxAs(0≤x≤0.4)或In1-yGayP1-zAsz有效层(0.51 < = y 1 = 0,0 / z = 1,z = 2.04y-1.04)和其上具有In1-yGayP1-zAs(z = 2.04y-1.04)的衍射光栅的层,其相邻 到活动层。
摘要:
A method for the formation of a diffraction grating on a substrate using a holographic technique and an etching technique, wherein the periodicity of the pattern of the diffraction grating can be changed at will by a change of the light-path length of one of the two light fluxes from a holographic exposing system.
摘要:
A buried type semiconductor laser device comprising a multi-layered epitaxial growth crystal including a striped laser-oscillation operating area on a semiconductor substrate, wherein said laser-oscillation operating area contains a buffer layer having the same polarity as said substrate, an active layer and a cladding layer having a polarity different from that of said substrate, said laser-oscillation operation area being sandwiched between one part of the burying layer and another part of the burying layer, which are disposed on said substrate and which have a polarity different from that of said substrate, through said substrate or a diffusion region having an impurity with the same polarity as said substrate so as to electrically isolate said burying layer from said cladding layer, thereby maintaining ineffective current flowing from said cladding layer to said burying layer at a low level even when current injected into said device is increased.