Hilligsøe Karen Marie, Andersen Thomas, Paulsen Henrik, Nielsen Carsten, Mølmer Klaus, Keiding Søren, Kristiansen Rene, Hansen Kim, Larsen Jakob
Opt Express. 2004 Mar 22;12(6):1045-54. doi: 10.1364/opex.12.001045.
We demonstrate supercontinuum generation in a highly nonlinear photonic crystal fiber with two closely lying zero dispersion wavelengths. The special dispersion of the fiber has a profound influence on the supercontinuum which is generated through self-phase modulation and phasematched four-wave mixing and not soliton fission as in the initial photonic crystal fibers. The supercontinuum has high spectral density and is extremely independent of the input pulse over a wide range of input pulse parameters. Simulations show that the supercontinuum can be compressed to ultrashort pulses.
我们展示了在具有两个紧密相邻零色散波长的高非线性光子晶体光纤中产生的超连续谱。这种光纤的特殊色散对超连续谱有着深远影响,该超连续谱是通过自相位调制和相位匹配四波混频产生的,而非像最初的光子晶体光纤那样通过孤子分裂产生。该超连续谱具有高光谱密度,并且在很宽的输入脉冲参数范围内与输入脉冲极其无关。模拟结果表明,该超连续谱可被压缩为超短脉冲。