Guo Hairun, Zhou Binbin, Steinert Michael, Setzpfandt Frank, Pertsch Thomas, Chung Hung-ping, Chen Yen-Hung, Bache Morten
Opt Lett. 2015 Feb 15;40(4):629-32. doi: 10.1364/OL.40.000629.
Supercontinuum generation (SCG) is most efficient when the solitons can be excited directly at the pump laser wavelength. Quadratic nonlinear waveguides may induce an effective negative Kerr nonlinearity, so temporal solitons can be directly generated in the normal (positive) dispersion regime overlapping with common ultrafast laser wavelengths. There is no need for waveguide dispersion engineering. Here, we experimentally demonstrate SCG in standard lithium niobate (LN) waveguides without quasi-phase matching (QPM), pumped with femtosecond pulses in the normal dispersion regime. The observed large bandwidths (even octave spanning), together with other experimental data, indicate that negative nonlinearity solitons are indeed excited, which is backed up by numerical simulations. The QPM-free design reduces production complexity, extends the maximum waveguide length, and limits undesired spectral resonances. Finally, nonlinear crystals can be used where QPM is inefficient or impossible, which is important for mid-IR SCG. QPM-free waveguides in mid-IR nonlinear crystals can support negative nonlinearity solitons, as these waveguides have a normal dispersion at the emission wavelengths of mid-IR ultrafast lasers.
当孤子能够在泵浦激光波长处直接被激发时,超连续谱产生(SCG)最为高效。二次非线性波导可能会诱导出有效的负克尔非线性,因此时间孤子能够在与常见超快激光波长重叠的正常(正)色散区域直接产生。无需进行波导色散工程。在此,我们通过实验证明了在不具备准相位匹配(QPM)的标准铌酸锂(LN)波导中实现了SCG,该波导在正常色散区域由飞秒脉冲泵浦。观察到的大带宽(甚至跨越倍频程)以及其他实验数据表明,负非线性孤子确实被激发了,这得到了数值模拟的支持。无QPM设计降低了生产复杂性,延长了波导的最大长度,并限制了不期望的光谱共振。最后,在QPM效率低下或无法实现QPM的情况下,可以使用非线性晶体,这对于中红外SCG很重要。中红外非线性晶体中的无QPM波导能够支持负非线性孤子,因为这些波导在中红外超快激光的发射波长处具有正常色散。