论文标题

超宽带可见和红外光生在宽区域驱动的光发光范围从8μm到240μm

Ultra-Broadband Visible and Infrared Light Generation Driven by Far Infrared Light in the Broad Region from 8μm to 240μm

论文作者

Rosemann, Nils W., Döring, Robin C., Dornsiepen, Eike, Belz, Jürgen, Haust, Johannes, Bernhardt, Felix, Ziese, Ferdinand, Attaccalite, Claudio, Winnerl, Stephan, Schneider, Harald, Helm, Manfred, Dehnen, Stefanie, Volz, Kerstin, Sanna, Simone, Chatterjee, Sangam

论文摘要

最常用的非线性光学过程是在公共激光指针中执行的1064nm处的红外光在532nm处转化为绿光。但是,与未来的应用更相关的是产生广泛频谱的非线性光学过程,即所谓的超脑。一个理想的目标是生成覆盖整个可见范围(400 -900nm)的频谱,即白光。如今,通常在需要高激光强度的特殊设计的光子纤维中实现白光生成。但是,在先前的研究中,我们表明$(phsn)_4S_6 $ cluster-molecules的无定形粉末在被低强度近红外光照射时会产生白光。在这项研究中,我们使用自由电子激光器的中和远红外辐射研究相同的分子。观察到白光的生成,以在8到240 $μm之间的波长中进行激发。虽然发射的辐射仅显示出轻微的变化,但其强度强烈取决于激发波长。然后,我们将依赖性效率与材料的红外吸收光谱匹配。该比较表明:每当激发可以引入分子振动时,就会产生较少的白光。对于所有其他波长,激发主要与电子系统相互作用。这表明电子系统和分子主链在很大程度上被解耦。我们的工作有助于理解非线性过程,该过程是$(PHSN)_4S_6 $ cluster Molecules中白光产生的基础。此外,它在需要宽的激光光谱的应用中显示了该材料的高潜力。

The most commonly used nonlinear optical process is the conversion of infrared light at 1064nm to green light at 532nm, as performed in common laser pointers. However, more relevant for future applications are nonlinear optical processes that generate a broad spectrum, a so called supercontinuum. A desirable goal is generating a spectrum that covers the whole visible range (400 -900nm), i.e., white light. Nowadays, white-light generation is usually achieved in specially designed photonic fibres requiring high laser intensities. However, in previous studies we showed that amorphous powders of $(PhSn)_4S_6$ cluster-molecules generate white light when they are irradiated by low-intensity near-infrared light. In this study, we use the mid- and far-infrared radiation of a free-electron laser to investigate the same molecules. White-light generation is observed for excitation with wavelength between 8 and 240$μ$ m. While the emitted radiation shows only slight variations, its intensity strongly depends on the excitation wavelength. We then match the wavelength dependent efficiency with the infrared absorption spectra of the material. This comparison shows: whenever the excitation can introduce molecular vibrations, less white light is generated. For all other wavelengths the excitation interacts mostly with the electron system. This shows that the electron system and the molecular backbone are decoupled to a large extent. Our work contributes to the understanding of the nonlinear process that underlies white-light generation in $(PhSn)_4S_6$ cluster molecules. Additionally, it shows the high potential of this material in applications where a broad laser spectrum is desired.

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