Titanium dioxide-based Q-switched dual wavelength in the 1 micron region

  • H. Ahmad H
  • M. A. M. Salim M
  • Z. A. Ali Z
  • et al.
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Abstract

© 2016 Chinese Optics Letters. In this work a passively Q-switched dual-wavelength ytterbium-doped fiber laser using a titanium dioxide-based saturable absorber is proposed and proven. The system also utilizes a side-polished fiber in a ring cavity configuration to obtain the desired pulse train. A stable dual-wavelength pulse output is obtained at 1034.7 and 1039.0 nm, with a maximum pulse energy of 2.0 nJ, and a shortest pulse width of 3.2 μs. The generated pulse train is stable, and has a pulse repetition rate from 31.2 to 64.5 kHz.

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H. Ahmad, H. A., M. A. M. Salim, M. A. M. S., Z. A. Ali, Z. A. A., M. F. Ismail, M. F. I., K. Thambiratnam, K. T., A. A. Latif, A. A. L., … and S. W. Harun, and S. W. H. (2016). Titanium dioxide-based Q-switched dual wavelength in the 1 micron region. Chinese Optics Letters, 14(9), 091403–091407. https://doi.org/10.3788/col201614.091403

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