...
首页> 外文期刊>ACS nano >Three-Pulse Femtosecond Spectroscopy of PbSe Nanocrystals: 1S Bleach Non linearity and Sub-Band-Edge Excited-State Absorption Assignment
【24h】

Three-Pulse Femtosecond Spectroscopy of PbSe Nanocrystals: 1S Bleach Non linearity and Sub-Band-Edge Excited-State Absorption Assignment

机译:PbSe纳米晶体的三脉冲飞秒光谱:1S漂白非线性和子带边激发态吸收分配

获取原文
获取原文并翻译 | 示例

摘要

Above band-edge photoexcitation of PbSe nanocrystals induces strong below band gap absorption as well as a multiphased buildup of bleaching in the 1Se1Sh transition. The amplitudes and kinetics of these features deviate from expectations based on biexciton shifts and state filling, which are the mechanisms usually evoked to explain them. To clarify these discrepancies, the same transitions are investigated here by double-pumpprobe spectroscopy. Re-exciting in the below band gap induced absorption characteristic of hot excitons is shown to produce additional excitons with high probability. In addition, pumpprobe experiments on a sample saturated with single relaxed excitons prove that the resulting 1S(e)1S(h) bleach is not linear with the number of excitons per nanocrystal. This finding holds for two samples differing significantly in size, demonstrating its generality. Analysis of the results suggests that below band edge induced absorption in hot exciton states is due to excited-state absorption and not to shifted absorption of cold carriers and that 1S(e)1S(h) bleach signals are not an accurate counter of sample excitons when their distribution includes multiexciton states.
机译:PbSe纳米晶体的带隙上方光激发引起强烈的带隙以下吸收以及1Se1Sh过渡过程中的多相漂白。这些特征的振幅和动力学与基于双激子位移和状态填充的预期相背离,这通常是解释它们的机制。为了澄清这些差异,此处通过双泵探针光谱法研究了相同的跃迁。热激子在以下带隙引起的吸收特性中重新激发显示出产生高可能性的其他激子的能力。另外,在用单个松弛激子饱和的样品上进行的泵浦探针实验证明,所得的1S(e)1S(h)漂白剂与每个纳米晶体的激子数量不是线性的。这一发现适用于两个样本的大小差异很大,证明了它的普遍性。对结果的分析表明,在热激子状态下在带边缘以下引起的吸收是由于激发态吸收而不是由于冷载流子的位移吸收,并且1S(e)1S(h)漂白信号不是样品激子的准确计数器当它们的分布包括多激态时。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号