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Anisotropic enhancement of Yb3+ luminescence by disordered plasmonic networks self-assembled on RbTiOPO4 ferroelectric crystals

机译:各向异性增强Yb3 +发光的无序电浆网络自组装RbTiOPO4铁电晶体

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摘要

Increasing Yb3+ absorption efficiency is currently desired in a number of applications including bioimaging, photovoltaics, near infrared driven photocatalysis or ultra-short pulsed solid-state lasers. In this work, silver nanoparticles, which are connected forming disordered networks, have been self-assembled on Yb3+ doped RbTiOPO4 crystals to produce a remarkable enhancement of Yb3+ absorption, and hence in the photoluminescence of this ion. The results are interpreted taking into account the near-field response of the plasmonic networks, which display strong amplification of the electric field at the maximum of Yb3+ excitation at around 900 nm, together with the anisotropic character of the Yb3+ transitions in RbTiOPO4. We show that in the near field regime, the scattering of the plasmonic networks produces additional polarization field components to those of the incident field, which allows access to the largest transition dipolar moment of Yb3+ ions in RbTiOPO4. As a result, a much more efficient route for Yb3+ excitation takes place at the immediacy of the plasmonic networks. This work provides fundamental insights for improving the optical properties of rare earth ions by the suitable design of metallic nanoparticle arrangements, and constitutes a promising step towards the development of new multifunctional solid-state lasers.
机译:目前增加Yb3 +吸收效率包括所需的应用程序bioimaging、光电、近红外驱动的光催化或超短脉冲固态激光。形成无序的网络连接在一起,有什么在自组装Yb3 +掺杂RbTiOPO4晶体产生显著的增强Yb3 +吸收,因此光致发光离子。考虑到近场电浆的反应网络,显示强大的放大的电场最大Yb3 +激励在900纳米左右,的各向异性特性在RbTiOPO4 Yb3 +过渡。的散射近场政权电浆网络产生额外的极化场的组件事件字段,它允许访问最大的Yb3 +离子跃迁偶极矩RbTiOPO4。路线Yb3 +激励发生的直接的电浆网络。为改善提供了基本的见解稀土离子的光学特性合适的金属纳米粒子的设计安排,并构成一个有前途的一步对新的多功能的发展固态激光。

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