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Polymer nanofibers as novel light-emitting sources and lasing material

机译:聚合物纳米纤维作为新型发光源和激光材料

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Polymer micro- and nano-fibers, made of organic light-emitting materials with optical gain, show interesting lasing properties. Fibers with diameters from few tens of nm to few microns can be fabricated by electrospinning, a method based on electrostatic fields applied to a polymer solution. The morphology and emission properties of these fibers, composed of optically inert polymers embedding laser dyes, are characterized by scanning electron and fluorescence microscopy, and lasing is observed under optical pumping for fluences of the order of 102 μJ cm-2. In addition, lightemitting fibers can be electrospun by conjugated polymers, their blends, and other active organics, and can be exploited in a range of photonic and electronic devices. In particular, waveguiding of light is observed and characterized, showing optical loss coefficient in the range of 10~2-10~3 cm~(-1). The reduced size of these novel laser systems, combined with the possibility of achieving wavelength tunability through transistor or other electrode-based architectures embedding nonlinear molecular layers, and with their peculiar mechanical robustness, open interesting perspectives for realizing miniaturized laser sources to integrate on-chip optical sensors and photonic circuits.
机译:聚合物微米和纳米纤维,由具有光学增益的有机发光材料,显示出有趣的激光性能。从几十纳米到几微米的直径的纤维可以通过电纺丝来制造,施加到聚合物溶液基于静电场的方法。这些纤维的形态和发射特性,惰性聚合物嵌入激光染料的光学组成,其特点是扫描电子显微镜和荧光显微镜,及光泵浦下观察到的102μJ厘米-2的顺序的能量密度发射激光。此外,发光纤维可以通过共轭聚合物,它们的共混物,和其它活性有机物是电,并且可以在一个范围内的光子和电子装置的被利用。具体地,光的波导观察和表征,显示出在10〜2-10〜3厘米范围内的光损失系数〜(-1)。这些新型激光系统的减小的尺寸,以通过晶体管或其他基于电极的体系结构实现波长可调性嵌入的非线性分子层,并用其特有的机械强度的可能性相结合,用于实现小型化的激光源打开有趣的观点来集成片上光学传感器和光子电路。

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