首页> 外文会议>SPIE Conference on Nonlinear Frequency Generation and Conversion: Materials, Devices, and Applications >ONE- AND TWO-PHOTON PUMPED SOFT LITHOGRAPHED DFB LASER SYSTEMS BASED ON SEMICONDUCTOR CORE-SHELL QUANTUM DOTS
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ONE- AND TWO-PHOTON PUMPED SOFT LITHOGRAPHED DFB LASER SYSTEMS BASED ON SEMICONDUCTOR CORE-SHELL QUANTUM DOTS

机译:基于半导体核心壳量子点的单光子和双光子泵浦软光滑DFB激光系统

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In the last years inorganic semiconductor (particularly CdSe and CdS) quantum dots (QDs) have received great attention for their important optical properties. The possibility to tune the emission wavelength, together with their high fluorescence quantum efficiency and photostability, can be exploited in ph9tonic and optoelectronic technological applications. The design of DFB devices, based on QDs as active optical material, leads to the realization of compact laser systems. In this work we explore the use of an inorganic/organic hybrid material composed of CdSe-ZnS semiconductor quantum dots doped into a zirconia sol-gel matrix for optical gain applications. Through the use of soft lithography on a sol-gel germania-silica hybrid, large scale distributed feedback gratings can be created. Used in conjunction with the CdSe-ZnS/ZrO_2 hybrids, these gratings can act as microcavities and allow for the realization of true lasing action. The lasing properties within these devices are characterized in the femtosecond regime by both one- and two-photon excitation. From experimental data the value of the optical gain of the core-shell quantum dot samples has been estimated. Moreover, one- and two-photon lasing threshold and stability are reported.
机译:在过去几年中,无机半导体(特别是CDSE和CDS)量子点(QDS)对其重要的光学性质感到非常关注。可以在PH9tonic和光电技术应用中利用调谐发射波长和高荧光量子效率和光稳定性的可能性。基于QDS作为有源光学材料的DFB器件设计导致紧凑型激光系统的实现。在这项工作中,我们探讨了由掺杂到氧化锆溶胶基矩阵中的Cdse-ZnS半导体量子点组成的无机/有机混合材料,用于光学增益应用。通过在溶胶 - 凝胶锗 - 二氧化硅混合动力车上使用软光刻,可以创建大规模的分布式反馈光栅。与CDSE-ZNS / ZRO_2混合动力车一起使用,这些光栅可以充当微腔并允许实现真正激光的动作。这些器件内的激光特性在于通过单光子激发和双光子激发的飞秒制度的特征在于。根据实验数据,估计了核心壳量子点样品的光学增益的值。此外,报道了一种和双光子激光阈值和稳定性。

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