Bright Soliton-Like Pulses in Self-Defocusing Material

N. Bélanger, A. Villeneuve, J. Aitchison
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Abstract

Temporal bright solitons are well known and still studied because they provide a great potential in long distance lightwave systems. Bright temporal solitons have been observed [1] in silica fiber in which the Kerr nonlinearity (n2) is positive and the dispersion anomalous (β2<0). Since bright solitons exist as long as n2 and β2 are of opposite sign, another regime is possible and was observed recently [2] near the band gap in AlGaAs waveguide having a self-defocusing nonlinearity and normal dispersion. In this case, the solitonic feature can be deduced from a temporal narrowing of the pulse with increasing input pulse peak power. For pulses of increasing peak power, the self-phase modulation better compensates the dispersion. Nevertheless it still not possible to conclude in a solitonic phenomenon in a strict way since no information was obtain about the spectrum. If an important spectral broadening with increasing pulse peak power occurs, it would clearly deny the soliton hypothesis. In this presentation we propose to introduce spectral measurements and to qualify the pulse behavior.
自散焦材料中的明亮类孤子脉冲
由于时间亮孤子在远距离光波系统中提供了巨大的潜力,因此它们为人所熟知并仍在研究中。在二氧化硅光纤中已经观察到明亮的时间孤子[1],其中克尔非线性(n2)为正,色散异常(β2<0)。由于只要n2和β2的符号相反,就可能存在明亮孤子,最近在AlGaAs波导的带隙附近观察到另一种状态[2],具有自散焦非线性和正常色散。在这种情况下,随着输入脉冲峰值功率的增加,脉冲的时间变窄可以推断出孤子特征。对于峰值功率增大的脉冲,自相位调制能较好地补偿色散。然而,由于没有获得有关谱的信息,因此仍然不可能以严格的方式得出孤子现象的结论。如果随着脉冲峰值功率的增加出现一个重要的谱宽,它将明显地否定孤子假说。在本报告中,我们建议引入光谱测量并对脉冲行为进行定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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