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Tuning the wavelength of lasing emission in organic semiconducting laser by the orientation of liquid crystalline conjugated polymer

机译:通过液晶共轭聚合物的取向调谐有机半导体激光器中的激光发射波长

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摘要

We report the optical pumping of one-dimensional distributed feedback (DFB) conjugated polymer devices using a uniaxially aligned liquid crystalline polymer, poly(9,9-dioctylfluorene). We can independently select the alignment direction (via a rubbed polyimide layer) and the DFB structure (via nanoimprinting). In comparison with unaligned film, we show that lasing threshold is substantially reduced when absorption is parallel to the aligned direction (similar to 20.0 mu J cm(-2) pulse(-1)). This is mainly due to the higher absorption coefficient estimated in the table by calculating the exciton densities at each threshold value. We also report the control of lasing wavelength through independent selection of alignment direction and DFB orientation, which is achieved through the control of the effective refractive index of waveguide (n(eff)).
机译:我们报告使用单轴排列的液晶聚合物,聚(9,9-二辛基芴)的一维分布式反馈(DFB)共轭聚合物器件的光泵浦。我们可以独立选择排列方向(通过摩擦的聚酰亚胺层)和DFB结构(通过纳米压印)。与未取向膜相比,我们显示出当吸收平行于取向方向(类似于20.0μJcm(-2)脉冲(-1))时,激光阈值会大大降低。这主要归因于表中通过计算每个阈值处的激子密度估算出的更高的吸收系数。我们还报告了通过独立选择取向方向和DFB方向来控制激光波长,这是通过控制波导的有效折射率(n(eff))来实现的。

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