Search results for "kuituoptiikka"

showing 2 items of 2 documents

Ytterbium-doped fibers for high-power fiber lasers

2021

Ytterbium (Yb) doped optical fibers are widely used in high-power applications and ultrafast lasing since they show adequate power-handling capability and provide desirable beam quality. Yb-doped fibers with large core area can support high power but often act as a multimode fiber and compromise the output beam quality. Hence, it is important to attain a proper balance between the power-handling capability and the beam quality. Yb-doped fibers as a gain medium in pulsed fiber laser systems are prone to nonlinear optical effects due to the presence of high peak power in the ultrashort pulses. Nonlinearity such as self phase modulation (SPM) affects the width and the shape of the pulse, both …

Chirped pulse amplificationoptiset kuidutOptical fiberMulti-mode optical fiberMaterials sciencebusiness.industrydouppaus (puolijohdetekniikka)Physics::Opticslasertekniikkalaw.inventionlaseritkuituoptiikkaOpticslawFiber laserChirpLaser beam qualitybusinessSelf-phase modulationUltrashort pulse
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Optical Fiber Based Dosimeter Data From RADEF Pulsed Electron Beams - Oscilloscope Traces

2021

These data are from tests of fiber optic based dosimetry systems. The purpose of the collected data is to use it for characterizing the different tested samples responses against pulsed electron radiation, for different electron bunch sizes. The tested samples are sol-gel silica glass rods doped with Ce, Cu, or Gd ions, making the rods radioluminescent. The samples were connected to a multimode pure-silica core optical fiber, which transported the radiation induced luminescence (RIL) to a photomultiplier tube (PMT) with an optical band pass filter in front of it. The samples were subject to a pulsed 20 MeV electron beam. The resulting output pulses from the PMT from the induced RIL light we…

kuituoptiikkasäteilytysirradiationionising radiationionisoiva säteilyluminesenssidosimetersluminescenceelectronsdosimetritfibre opticselektronit
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