Banfi G P, Datta P K, Degiorgio V, Donelli G, Fortusini D, Sherwood J N
Opt Lett. 1998 Mar 15;23(6):439-41. doi: 10.1364/ol.23.000439.
We exploit the high second-order susceptibility of the organic crystal N-(4-nitrophenyl)-L-prolinol to accomplish, through a cascaded second-order process, wavelength conversion of a signal pulse (from 1.16 to 1.14 microm) under the action of a pump pulse (at 1.15 microm). In a 2.8-mm-thick crystal, wavelength conversion with unit gain was obtained with a pump peak intensity as low as 9 MW/cm(2) . At low intensities, in the limit of negligible conversion where the cascading effect can be described through an effective third-order susceptibility, we derive |(x)((3))(eff) | approximately 2.4 x 10(-17) m(2)/V(2), which is ~10(2) larger than the nonresonant (x)((3)) of conjugated polymers or semiconductors.
我们利用有机晶体N-(4-硝基苯基)-L-脯氨醇的高二阶极化率,通过级联二阶过程,在泵浦脉冲(波长为1.15微米)的作用下,实现信号脉冲(从1.16微米转换为1.14微米)的波长转换。在一块2.8毫米厚的晶体中,泵浦峰值强度低至9兆瓦/平方厘米时,获得了单位增益的波长转换。在低强度下,在转换可忽略不计的极限情况下,级联效应可通过有效三阶极化率来描述,我们得出|(χ)(3)(eff)|约为2.4×10-17平方米/伏2,这比共轭聚合物或半导体的非共振(χ)(3)大~102倍。