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We propose a novel design for making the gain of single-pump, fiber-optic parametric amplifiers polarization independent. We show that under suitable conditions, signal gain varies by < 0.1 dB as its polarization varies.
We report on the excellent agreement of a first-principles, quantum dynamical simulation with the experimentally measured results of a fiber squeezer using intense, ultra-short laser pulses.
We report on the observation of cross phase modulation instability (XPMI) in photonic crystal fiber (PCF). The rapidly varying dispersion of the fiber around its zero dispersion wavelength gives rise to a complicated phasematching curve.
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