DocumentCode :
1301375
Title :
Dynamic properties of an all solid-state frequency-shifted feedback laser
Author :
Kasahara, Kumio ; Nakamura, Koichiro ; Sato, Manabu ; Ito, Hiromasa
Author_Institution :
Res. Inst. of Electr. Commun., Tohoku Univ., Sendai, Japan
Volume :
34
Issue :
1
fYear :
1998
fDate :
1/1/1998 12:00:00 AM
Firstpage :
190
Lastpage :
203
Abstract :
Frequency-shifted feedback (FSF) laser exhibits outstanding features in its oscillation spectrum. We analyze build-up dynamic properties of the FSF laser by means of rate equation and analyze steady-state dynamic properties of the FSF laser by means of Wigner-Ville distribution of intracavity electric field. Furthermore, we analyze instantaneous oscillation frequency at peak spectral intensity and oscillation bandwidth of its spectrum using the formula of instantaneous spectral intensity derived from Wigner-Ville distribution of intracavity electric field. These analytical results are in good agreement with the experimental ones which have been observed by a diode-pumped Nd:YVO4 FSF laser. It becomes clear that the FSF laser supports many frequency components simultaneously even though the gain medium is homogeneously broadened and has a continuously chirped frequency components of comb in which the creation of chirped frequency components are strongly correlated in phase because of a replica of the preceding components. Also, the instantaneous oscillation frequency is closely related to the detuning frequency which depends on the total net gain in the cavity and the gain bandwidth of atomic transition. The oscillation bandwidth is defined as the product of the saturation-broadened bandwidth and the total resonant modes contributing to FSF operation
Keywords :
chirp modulation; dynamics; laser cavity resonators; laser feedback; laser theory; neodymium; optical modulation; optical pumping; solid lasers; yttrium compounds; Wigner-Ville distribution; YVO4:Nd; all solid-state frequency-shifted feedback laser; atomic transition; build-up dynamic properties; chirped frequency components; continuously chirped frequency components; diode-pumped Nd:YVO4 solid laser; dynamic properties; frequency components; gain bandwidth; gain medium; homogeneously broadened; instantaneous oscillation frequency; instantaneous spectral intensity; intracavity electric field; oscillation bandwidth; oscillation spectrum; peak spectral intensity; rate equation; replica; saturation-broadened bandwidth; steady-state dynamic properties; Bandwidth; Chirp; Diodes; Distributed feedback devices; Equations; Frequency; Laser feedback; Solid state circuits; State feedback; Steady-state;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/3.655023
Filename :
655023
Link To Document :
بازگشت