1064 nm laser-induced defects in pure SiO_2 fibers

  • Stone J
  • Wadsworth W
  • Knight J
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Abstract

We investigate evidence of the formation of nonbridging oxygen hole centers in pure silica photonic crystal fibers from 5 ps 1064 nm pulses. The formation of the defects is attributed to the breaking of stressed silicon-oxygen bonds in the glass matrix through a many-photon process. We compare the photodarkening induced by the 1064 nm pump with photodarkening induced by short wavelength light in a 1064 nm pumped supercontinuum extending to 400 nm. It is shown that the higher peak power at the pump wavelength makes it a more significant cause of photodarkening when compared to the shorter wavelength light generated in the fiber.

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Stone, J. M., Wadsworth, W. J., & Knight, J. C. (2013). 1064 nm laser-induced defects in pure SiO_2 fibers. Optics Letters, 38(15), 2717. https://doi.org/10.1364/ol.38.002717

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