Abstract:
We present experimental evidence of quasiperiodic route to chaos in erbium-doped fiber laser operating simultaneously at 1.550 /spl mu/m and 1.536 /spl mu/m. Starting fro...Show MoreMetadata
Abstract:
We present experimental evidence of quasiperiodic route to chaos in erbium-doped fiber laser operating simultaneously at 1.550 /spl mu/m and 1.536 /spl mu/m. Starting from a CW state for high pumping rates the system becomes T-periodic, 2T-periodic, 3T-periodic and chaotic for decreasing pumping ratios. The low-frequency spectra shows two fundamental frequencies. The nT-periodic regimes correspond to a frequency locking of the low frequency on a subharmonic of the high frequency. An adapted model based on the rate equations is numerically investigated and leads to a good qualitative agreement with the experimental data.<>
Published in: IEEE Journal of Quantum Electronics ( Volume: 31, Issue: 3, March 1995)
DOI: 10.1109/3.364403
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- IEEE Keywords
- Index Terms
- Fiber Laser ,
- Quasi-periodic ,
- Erbium-doped Fiber ,
- Route To Chaos ,
- Fundamental Frequency ,
- Rate Equation ,
- Pumping Rate ,
- Good Qualitative Agreement ,
- Previous Results ,
- Dynamical ,
- Ion Pair ,
- Time Of Publication ,
- Absorption Cross-section ,
- Longitudinal Mode ,
- Laser Field ,
- Hopf Bifurcation ,
- Saturable Absorber ,
- Chaotic Dynamics ,
- Dual Operation ,
- Population Inversion ,
- Chaotic Regime ,
- Relaxation Oscillator
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Fiber Laser ,
- Quasi-periodic ,
- Erbium-doped Fiber ,
- Route To Chaos ,
- Fundamental Frequency ,
- Rate Equation ,
- Pumping Rate ,
- Good Qualitative Agreement ,
- Previous Results ,
- Dynamical ,
- Ion Pair ,
- Time Of Publication ,
- Absorption Cross-section ,
- Longitudinal Mode ,
- Laser Field ,
- Hopf Bifurcation ,
- Saturable Absorber ,
- Chaotic Dynamics ,
- Dual Operation ,
- Population Inversion ,
- Chaotic Regime ,
- Relaxation Oscillator