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A heterojunction photodiode with improved wavelength-selectivity and risetime. The problem of short-wavelength diffusion-tail response is avoided by interposing between the window and active layers a barrier layer of higher bandgap than that of the window layer, which prevents high-energy photocarriers generated in the window layer from diffusing to the PN junction. In one embodiment, n-type substrate, active, barrier, and window layers are initially grown, and the window layer is coated with an...
Channel separation of wavelength multi/demultiplexers using a grating structure in a planar multimode slab waveguide is improved by choosing the thickness of the slab waveguide to be greater than the input diameter at least in the area of the grating structure. The aperture of the radiation incident upon the grating structure is chosen to be correspondingly smaller than the input aperture.
A dual wavelength optical source includes a monolithic integrated pair of series-opposition connected diodes, each fabricated for emitting light having a different wavelength than the other. Polarity of a common bias current conducted through the diodes is reversed for activating alternatively light emission from the diodes. Active emission regions of the diodes are stacked upon one another for efficiently coupling the resulting beams of the different wavelengths of emitted light through a surfa...
A short wavelength laser (28) is provided that is driven by conventional-laser pulses (30, 31). A multiplicity of panels (32), mounted on substrates (34), are supported in two separated and alternately staggered facing and parallel arrays disposed along an approximately linear path (42). When the panels (32) are illuminated by the conventional-laser pulses (30, 31), single pass EUV or soft x-ray laser pulses (44, 46) are produced.
A multiplexer-demultiplexer for different wavelengths carried by optical fibers (10) the ends of which are disposed in the immediate vicinity of the focus of a concave mirror (18) associated with a plane diffraction grating (15) is disclosed. The multiplexer-demultiplexer consists of four elements that are adhesively attached to one another, namely, a fiber-carrying element (1); a grating-carrying element (15); an intermediary element (3) of the same index as the element (2); and a mirror elemen...
High speed, high quantum efficiency, low dark current, and avalanche gain greater than 10 are exhibited by a long wavelength avalanche photodetector including in succession a terminal region of p-type indium phosphide (InP) a multiplication region comprising first and second layers of n-type indium phosphide (InP), a grading layer of n-type indium gallium arsenide phosphide (InGaAsP), and an absorption region of n-type indium gallium arsenide (InGaAs).
An optical wavelength demultiplexer includes a retainer means which curvedly retains an optical fiber. A mirror-polished surface is formed on the convex side of a curved portion of the optical fiber which is retained by the retainer means in such a manner that the mirror-polished surface is in close proximity to the core of the optical fiber. Further, a diffraction grating is disposed such as to oppose and contact the mirror-polished surface. The pitch of the diffraction grating is set to be .la...
A self-contained automatic computer controlled system for checking and recalibrating the wavelength scale of both monochromators of a fluorescence spectrophotometer is described. No operator adjustments are required. The system sets the wavelength of each monochromator to within 0.1 nanometers. Besides automatic indexing at turn-on the operation can be repeated at any desired time. The system is applicable to single or double monochromator instruments.
A device for separating radiation beams of different wavelengths, which emerge from an optical fiber. The device includes a reflection grating and a wavelength-selective mirror. The wavelength-selective mirror is arranged between the optical fiber and the reflection grating. The mirror reflects radiation beams of wavelengths which are spaced comparatively far from the wavelengths of the radiation beams of comparatively closely spaced wavelengths. The reflected beam is reflected to an output fibe...
A microbend fiber optic sensor uses a dual wavelength to determine the effect of microbending without interference from unwanted signal fluctuations arising from component changes, for example. Periodic microbending losses in single mode, step index fiber optics depend critically upon the wavelength whereby a modulation wavelength can be chosen close to a reference wavelength so that both are affected equally by the unwanted fluctuations but only the modulation wavelength is affected by the micr...
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