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Analysis of the scalability of diffraction-limited fiber lasers and amplifiers to high average power

Optics Express · 2008 · Vol. 16(17) · pp. 13240–13240

Abstract

We analyze the scalability of diffraction-limited fiber lasers considering thermal, non-linear, damage and pump coupling limits as well as fiber mode field diameter (MFD) restrictions. We derive new general relationships based upon practical considerations. Our analysis shows that if the fiber's MFD could be increased arbitrarily, 36 kW of power could be obtained with diffraction-limited quality from a fiber laser or amplifier. This power limit is determined by thermal and non-linear limits that combine to prevent further power scaling, irrespective of increases in mode size. However, limits to the scaling of the MFD may restrict fiber lasers to lower output powers.

Photonic Crystal and Fiber OpticsAdvanced Fiber Optic SensorsAdvanced Fiber Laser TechnologiesOpticsFiber laserLaserMaterials scienceDiffractionLaser power scalingAmplifierFiberPower (physics)Optoelectronics

MeSH terms

Amplifiers, ElectronicEnergy TransferEquipment DesignFiber Optic TechnologyLasersModels, TheoreticalRefractometryComputer-Aided DesignEquipment Failure Analysis
Citations
716
FWCI
22.00
field-weighted impact
References
42
Percentile
100%
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Citations per year
References
Photonic-Crystal Fibers
Journal of Lightwave Technology · 2006 · 1,653 citations
Ytterbium-doped fiber amplifiers
IEEE Journal of Quantum Electronics · 1997 · 817 citations
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