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Updated: Jun 10, 2026

Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators
Published on: May 30, 2014
Design and optimization of fiber optical parametric oscillators for femtosecond pulse generation
Wen Qi Zhang1, Jay E Sharping, Richard T White
1Institute for Photonics & Advanced Sensing, University of Adelaide, SA 5005, Australia. wen.zhang@adelaide.edu.au
Abstract:
In this paper, we use a genetic algorithm and pulse-propagation analysis to design and optimize optical parametric oscillators based on soft-glass microstructured optical fibers. The maximum parametric gain, phase-match, walk-off between pump (1560 nm) and signal (880 nm) pulses, signal feedback ratio and signal-pump synchronization of the cavity are optimized. Pulse propagation analysis suggests that one can implement a fiber optical parametric oscillator capable of generating approximately 200-fs pulses at 880 nm with 43% peak-power conversion, high output pulse quality (time-bandwidth product approximately 0.43) and a wavelength tuning range that is limited only by the glass transmission windows.
