首页> 外文会议>Society of Photo-Optical Instrumentation Engineers Conference on Physical Chemistry of Interfaces and Nanomaterials >Synthesis, characterization and the use of PbSe/PbS and PbSe/PbSexS1-x core-shell nanocrystals as saturable absorbers in passively switched near infra-red lasers
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Synthesis, characterization and the use of PbSe/PbS and PbSe/PbSexS1-x core-shell nanocrystals as saturable absorbers in passively switched near infra-red lasers

机译:PBSE / PBS和PBSE / PBSEXS1-X芯 - 壳纳米晶体作为饱和吸收剂的合成,表征和使用PBSE / PBS和PBSEXS1-X芯壳纳米晶体

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The saturable absorbing properties of PbSe core nanocrystals (NCs), and their corresponding PbSe/PbS core-shell and PbSe/PbSeS core-alloyed shell NCs, were examined at an energy of 1.54 micron. These NCs act as an efficient passive Q-switch in near infra-red pulsed lasers. Saturation fluence values in the order of a few hundreds mJ/cm2 were obtained, leading to a laser power output of 2.0-3.5 mJ with a pulse duration of 40-53 nsec. We demonstrated a substantial increase of the emission quantum yield and a slight decrease of the saturation fluence values, when using PbSe/PbS and PbSe/PbSexS1-x core-shells structures, in comparison with the corresponding PbSe core NCs. A quasi-three level energy manifold was used for the simulation of saturation fluence curves and of the absorption cross sections. All samples were prepared in a novel colloidal synthetic method.
机译:在1.54微米的能量下检查PBSE核心纳米晶体(NCS)的可饱和吸收性能及其相应的PBSE / PBS核 - 壳和PBSE / PBSES核合金壳NC。这些NCS充当近红外线脉冲激光器的有效被动Q开关。获得饱和度量的速度值为几百MJ / cm2,导致2.0-3.5 MJ的激光功率输出,脉冲持续时间为40-53 nsec。与相应的PBSE核心NC相比,我们证明了当使用PBSE / PBS和PBSE / PBSEXS1-X核心壳结构时大幅增加的发光量子产量和饱和量的略微降低。用于模拟饱和度曲线和吸收横截面的模拟拟三级能量歧管。以新颖的胶体合成方法制备所有样品。

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