Escalé Marc Reig, Sergeyev Anton, Geiss Reinhard, Grange Rachel
Opt Express. 2017 Feb 20;25(4):3013-3023. doi: 10.1364/OE.25.003013.
The ability of nanowaveguides to confine and guide light has been applied for developing optical applications such as nanolasers, optical switching and localized imaging. These and others applications can be further complemented by the optical control of the guided modes within the nanowaveguide, which in turn dictates the light emission pattern. It has been shown that the light directionality can be shaped by varying the nanowire cross-sections. Here, we demonstrate that the directionality of the light can be modified using a single nanowaveguide with a nonlinear phenomenon such as second-harmonic generation. In individual lithium niobate nanowaveguides, we use second-harmonic modal phase-matching and we apply it to switch the guided modes within its sub-micron cross-section. In doing so, we can vary the light directionality of the generated light from straight (0° with respect to the propagation direction) to large spread angles (almost 54°). Further, we characterize the directionality of the guided light by means of optical Fourier transformation and show that the directionality of the guided light changes for different wavelengths.
纳米波导限制和引导光的能力已被应用于开发诸如纳米激光器、光开关和局部成像等光学应用。这些及其他应用可以通过对纳米波导内导模的光学控制得到进一步补充,而这又决定了光发射模式。已经表明,通过改变纳米线的横截面可以塑造光的方向性。在此,我们证明可以使用具有诸如二次谐波产生等非线性现象的单个纳米波导来改变光的方向性。在单个铌酸锂纳米波导中,我们利用二次谐波模式相位匹配,并将其应用于在亚微米横截面内切换导模。这样做时,我们可以将产生光的光方向性从直线方向(相对于传播方向为0°)改变为大的发散角(几乎54°)。此外,我们通过光学傅里叶变换来表征导波光的方向性,并表明导波光的方向性随不同波长而变化。