首页> 外文会议>Conference on nanobiosystems: Processing, characterization, and applications VI >Grating formation in bi-layered DNA-complex devices: Application to thin-film tunable dye lasers
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Grating formation in bi-layered DNA-complex devices: Application to thin-film tunable dye lasers

机译:双层DNA - 复杂器件中的光栅形成:在薄膜可调染料激光器中的应用

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Interaction of some organic dyes with DNA induces fluorescence enhancement through intercalation or groove binding, stimulating the development of compact tunable thin-film dye lasers. We have demonstrated amplified spontaneous emission (ASE), laser emission and its tuning via distributed feedback (DFB) with a dynamic grating formed in DNA-surfactant complexes doped with cyanine or hemicyanine dyes. The formation of semi-persistent (or quasi-dynamic) grating is more preferable in order to realize stable and easily tunable laser sources, so we fabricated bi-layered devices composed of a DNA-CTMA layer doped with pyridine 1 (Py1) and an PMMA layer including an azo dye, Disperse Red 1 (DR1). Under simultaneous excitation of the azo layer with interfering two beams for grating formation and the emission layer with another beam as pumping, we observed laser emission from the device. The oscillation wavelength was controlled by varying the incident beam angles allowing the fast tuning suitable to applications. Furthermore, monolithic DNA device having two functions of lasing and grating formation would be more promising. DNA-CTMA complex had been considered to be a poor matrix for grating inscription, but we found that doping of an azo-carbazole compound made it possible to inscribe gratings with relatively high diffraction efficiency and with fast response which could be applicable to monolithic tunable laser system.
机译:一些有机染料与DNA的相互作用使荧光增强通过插层或沟槽结合诱导,刺激紧凑可调谐薄膜染料激光器的发育。我们已经证明了扩增的自发发射(ASE),激光发射及其调谐,通过分布式反馈(DFB),其在掺杂有氰基或半氰胺染料的DNA-表面活性剂配合物中形成的动态光栅。更优选形成半持久性(或准动态)光栅,以实现稳定且易于调谐的激光源,因此我们制造了由掺杂有吡啶1(PY1)的DNA-CTMA层组成的双层器件和PMMA层包括偶氮染料,分散红色1(DR1)。在通过干扰用于光栅形成的两个光束和与另一个梁作为泵送的发光层的混合两个光束的同时激发,我们观察到来自装置的激光发射。通过改变入射光光束角度来控制振荡波长,允许适合于应用的快速调整。此外,具有两种激光和光栅形成的单片DNA装置将更有前途。 DNA-CTMA综合体被认为是用于光栅题字的差的基质,但我们发现偶氮咔唑化合物的掺杂使得可以刻标具有相对高的衍射效率和快速响应的可用性,这可能适用于单片可调激光系统。

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