论文标题
第二次谐波信号增强的TMDC谐振器
TMDC Resonators for Second Harmonic Signal Enhancement
论文作者
论文摘要
除了强烈的非线性光学响应外,过渡金属二甲化酶(TMDC)在可见的和红外方面具有高折射率。因此,通过将这些TMDC对介电纳米孔构成图案,可以产生高度限制的电磁模式。 TMDC纳米孔子的受控制造不仅可以增强材料的内在非线性响应,而且还允许通过纳米器阵列在空间上塑造发射。在这里,我们制造了有图案的WS2磁盘,该磁盘支持高内部共振电场,并在可见的状态下显示出第二次谐波(SH)的强大增强。此外,我们将WS2磁盘组装在阵列中,以与分阶段的阵列天线相比,在空间上指导相干SH发射。最后,我们研究并讨论了测量的SH信号的面积发射起源和强度的急剧差异,我们发现这取决于使用的大量WS2的材料变化。
In addition to their strong nonlinear optical response, transition metal dichalcogenides (TMDCs) possess a high refractive index in the visible and infrared regime. Therefore, by patterning those TMDCs into dielectric nanoresonators, one can generate highly confined electromagnetic modes. Controlled fabrication of TMDC nanoresonators does not only enhance the material's intrinsic nonlinear response, but also allows for spatially shaping the emission via nanoresonator arrays. Here we fabricate patterned WS2 disks that support a high internal resonant electric field and show strong enhancement of second harmonic (SH) generation in the visible regime. In addition, we assemble the WS2 disks in arrays to spatially direct the coherent SH emission, in analogy to phased array antennas. Finally, we investigate and discuss drastic differences in the areal emission origin and intensity of the measured SH signals, which we find to depend on material variations of the used bulk WS2.