observed with separation between generated laser
lines corresponding to the Hi-Bi FOLM period of
30.32 nm.
The preferred wavelength transmission period of
the Hi-Bi FOLM transmission spectrum in which the
laser wavelength is generated depends on the losses
inside the laser cavity, which, together with the EDF
amplification spectrum modify the Hi-Bi FOLM
transmission spectrum to generate ideal conditions
where laser wavelength is emitted. This wavelength
is tuned by displacement of the Hi-Bi FOLM
transmission spectrum through temperature changes
application on the FOLM Hi-Bi fiber loop.
Laser wavelength tuning on Hi-Bi FOLM fiber
loop temperature variations slope of -1.47 nm/1ºC in
CW operation and -1.5 nm/1ºC in active Q-switched
operation is observed. For pulsed operation by the
active Q-switched technique, changes are observed
in the pulse characteristics depending on the
generated laser wavelength. Pulse duration and pulse
energy increase when the laser emission is obtained
at longer tuned wavelengths.
ACKNOWLEDGEMENTS
We gratefully thanks to Cátedras CONACyT,
CONACyT postdoctoral fellow 160248 and
CONACyT project grants 237855 and 255284.
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