Chinese Optics Letters, Volume. 11, Issue 6, 061601(2013)

Spectral evolution of NIR luminescence in a Yb3+-doped photonic crystal fiber prepared by non-chemical vapor deposition

Chao Wang, Guiyao Zhou, Ying Han, Wei Wang, Changming Xia, and Lantian Hou

Silica-based Yb3+-doped glass is prepared by non-chemical vapor deposition. The drawn photonic crystal fiber (PCF) has a strong absorption at 976 nm and emission wavelength of approximately 1 037 nm. The intensity and spectral lineshape of the near infrared (NIR) luminescence of the Yb3+-doped PCF are recorded and discussed in terms of excitation power, excitation wavelength, fiber length, and Yb3+ ion concentration. The emission intensifies as the excitation power and Yb3+ ion concentration increase. The intensity of the shorter wavelength side of the luminescence spectrum decreases as the length of the PCF increases.

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Chao Wang, Guiyao Zhou, Ying Han, Wei Wang, Changming Xia, Lantian Hou, "Spectral evolution of NIR luminescence in a Yb3+-doped photonic crystal fiber prepared by non-chemical vapor deposition," Chin. Opt. Lett. 11, 061601 (2013)

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Paper Information

Category: Materials

Received: Nov. 15, 2012

Accepted: Feb. 25, 2013

Published Online: May. 31, 2013

The Author Email:

DOI:10.3788/col201311.061601

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