Pump absorption in coiled and twisted double-clad hexagonal fiber: effect of launching conditions and core location
Résumé
Ever extending applications of fiber lasers require energy efficient, high-power, small footprint and reliable fiber lasers and laser wavelength versatility. To meet these demands, next generation of active fibers for high-power fiber lasers is coming out that will eventually offer tailored spectroscopic properties, high robustness and reduced cooling requirements and improved efficiency through tailored pump absorption. We report on numerical modelling of the efficiency of the pump absorption in double clad active fibers with hexagonal shape of the inner cladding cross section and rare-earthdoped core. We analyze both the effect of different radii of the spool on which the fiber is coiled and different fiber twisting rates. Two different launching conditions were investigated: the Gaussian input pump beam and a speckle pattern that mimics the output of the pump laser diode pigtail. We have found that by asymmetric position of the rareearth-doped core we can significantly improve the pump absorption.
Domaines
Optique [physics.optics]
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18_Dalidet_SPIE_Phot_West_hexagon-6pages_v1.pdf (192.66 Ko)
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