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Divoky, M; Pilar, J; Hanus, M; Navratil, P; Sawicka-Chyla, M; De Vido, M; Phillips, P J; Ertel, K; Butcher, T; Fibrich, M; Green, J T; Koselja, M; Preclikova, J; Kubat, J; Houzvicka, J; Rus, B; Collier, J; Lucianetti, A; Mocek, T
Optics express, 02/2020, Letnik: 28, Številka: 3Journal Article
We compare for the first time the influence of different Yb:YAG gain media on the performance of a large-area, high average-power laser system with an output energy of up to 6 J. Monocrystalline slabs grown by a new technique without central growth defect are compared with ceramics. Small signal gain, maximum output energy and thermal lensing are compared for ceramic slabs with co-sintered amplified spontaneous emission (ASE) absorber cladding, monocrystalline slab with and without optically bonded ASE absorber cladding, and surface structured monocrystalline slabs. We show that these large monocrystals with optically bonded absorber cladding have similar performance to cladded ceramics, so far the only material for high-energy Yb:YAG lasers.
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