FIELD: optics; electrical engineering.
SUBSTANCE: invention relates to optoelectronics, lighting, devices emitting in the visible, infrared and terahertz ranges, can be used for the development and production of x sources with a controlled spectrum of radiation in medicine, technology, transport, and everyday life. Source of radiation with a controlled spectrum is made in the form of a hollow cylindrical body, the inner surface of which is a cylindrical radiation reflector, and the window is a cylindrical lens. Inside the body, a light-emitting microchannel structure is formed with semiconductor micro- or nanopowders excited by LED radiation and luminescing in spaced spectral bands λJ. Light-emitting microchannel structure is made in the form of one, or two, or more micro-channel cells-elements (MCE) in the form of identical cylinders attached to each other along a generatrix, to the ends of each of which are mechanically and optically connected by two LEDs: one, exciting – with radiation in the spectral band λincl, another, complementary – with radiation in the spectral band λadd. Spectral emission bands of all MCEs and their complementary LEDs do not coincide and for each of them are distributed in the ratio – λincl<λJ<λadd.
EFFECT: expansion of the spectral range, control of spectral characteristics, increase in the efficiency of photon transformations.
1 cl, 2 dwg
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Authors
Dates
2018-07-16—Published
2017-06-22—Filed