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Efficient 2.1‐μm lasers based on Tm 3+: Lu 2 O 3 ceramics pumped by 800–nm laser diodes

Antipov, O. L. ; Novikov, A. A. ; Zakharov, N. G. ; Zinoviev, A. P. ; Yagi, H. ; Sakharov, N. V. ; Kruglova, M. V. ; Marychev, M. O. ; Gorshkov, O. N. ; Lagatskii, A. A.

Physica status solidi. C, 2013-06, Vol.10 (6), p.969-973 [Periódico revisado por pares]

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  • Título:
    Efficient 2.1‐μm lasers based on Tm 3+: Lu 2 O 3 ceramics pumped by 800–nm laser diodes
  • Autor: Antipov, O. L. ; Novikov, A. A. ; Zakharov, N. G. ; Zinoviev, A. P. ; Yagi, H. ; Sakharov, N. V. ; Kruglova, M. V. ; Marychev, M. O. ; Gorshkov, O. N. ; Lagatskii, A. A.
  • É parte de: Physica status solidi. C, 2013-06, Vol.10 (6), p.969-973
  • Descrição: Abstract Structural, optical and spectroscopic properties of Tm 3+ :Lu 2 O 3 ceramics were studied. CW laser operation at 2068 nm with an output power of up to 34 W and a slope efficiency of 44% was obtained. Q‐switched ocsilation with a pulse duration of 100‐150 ns and a repetition rate of 1‐10 kHz was achieved. Passive mode locking was achieved using an ion‐implanted InGaAsSb quantum‐well based SESAM or single graphene layer. Transform‐limited pulses as short as 180 fs are generated at 2076 nm with an average output power of 400 mW and a pulse repetition frequency of 121.2 MHz. (© 2013 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)
  • Idioma: Inglês

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