FIELD: lighting engineering.
SUBSTANCE: group of inventions relates to active optical fibers with all-fiber input of pump radiation into the first cladding. Cone optical fiber enhancing the optical radiation contains a core of quartz glass, doped with ions of rare-earth elements and additional dopants (for example, Ge, Al, P, F, B), taken together or separately, with the core diameter increasing along the length of the fiber. In addition, the fiber light guide contains at least one shell of quartz glass and a protective coating. Core refractive index is higher than the refractive index of a quartz glass shell, the refractive index of which is higher than the refractive index of the second shell (made from doped quartz glass or a polymer coating).
EFFECT: technical result is the fabrication of a fiber-cone with a large threshold of non-linear effects for amplifying optical radiation in the spectral region of 1 mcm doped with ytterbium oxide and having a completely fiber input of pump radiation towards the amplified signal.
3 cl, 3 dwg
Title | Year | Author | Number |
---|---|---|---|
FIBER OPTIC CONDUCTOR FOR OPTICAL INTENSIFICATION OF RADIATION AT WAVELENGTHS RANGING BETWEEN 1000 AND 1700 NM, METHODS FOR ITS MANUFACTURE, AND FIBER LASER | 2005 |
|
RU2302066C1 |
RAMAN FIBER LASER | 2000 |
|
RU2158458C1 |
METHOD FOR MAKING OF FIBER LIGHT GUIDES WORKPIECES, DEVICE FOR ITS IMPLEMENTATION AND WORKPIECE FABRICATED THEREOF | 2007 |
|
RU2363668C2 |
INTEGRAL OPTICAL WAVEGUIDE WITH ACTIVATED CORE, DOUBLE LIGHT-REFLECTIVE SHELL AND ITS MANUFACTURE METHOD | 2010 |
|
RU2457519C1 |
HIGH-POWER OPTICAL FIBER AMPLIFIER PUMPED WITH MULTIMODE LASER SOURCE | 1993 |
|
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HIGH-ENERGY FIBER LASER, GENERATING SUPERSHORT PULSES | 2015 |
|
RU2670584C1 |
FIBER LIGHT CONDUCTOR OF OPTICAL QUANTUM AMPLIFIER | 1993 |
|
RU2062540C1 |
FIBER-OPTICAL CONVERTER OF MODE FIELD DIAMETER AND METHOD FOR ITS MANUFACTURING | 1997 |
|
RU2113001C1 |
NARROW-BAND FIBER LASERS OF GREAT POWER WITH EXPANDED RANGE OF WAVE LENGTHS | 2002 |
|
RU2269849C2 |
METHOD FOR INCREASE OF PASS BAND OF MULTIMODE FIBER OPTIC TRANSMISSION LINE | 2007 |
|
RU2350987C1 |
Authors
Dates
2018-12-11—Published
2017-07-11—Filed