论文标题

部分可观测时空混沌系统的无模型预测

The anisotropic photorefractive effect in lithium sulfo-phosphate glass system doped with nickel ions

论文作者

Reddy, A. Siva Sesha, Kityk, A. V., Jedryka, J., Purnachand, N., Rakus, P., Wojciechowski, A., Andrushchak, A. S., Kumar, V. Ravi, Veeraiah, N.

论文摘要

在这项工作中,报道了掺杂镍氧化镍(NO)的非线性光学(NLO)研究(范围为0.2至1.0 mol%)LI2SO4-MGO-P2O5玻璃。飞秒(FS)激光器作为抽水源和低功率探测激光的高临界光源的组合用于研究这些玻璃材料中的光诱导的光学各向异性(OA)。光引起的双折射(LIB)表现出缓慢的松弛趋势,直至大约10 s,暗示着各向异性光致热效应显然主导了快速Kerr效应。根据最近报道的其他结果,对此行为进行了评估,并通过玻璃聚合机制来解释。光赋予双折射随着NIO量的增加高达0.8 mol%的增加而增加,这归因于玻璃网络的解放程度增强,因为Ni2+离子浓度占据了八面体(OH)位置的浓度。然而,NIO含量(> 0.8 mol%)的进一步增加是由于光折射双发性的一定减少。浓度趋势的显着变化是通过占据四面体(Th)位点的镍离子的增加而引起的声子损失的上升来解释的,从而促进玻璃网络的聚合。 NIO含量约为0.8 mol%的掺杂玻璃在光赋予效率的意义上可能被认为是最佳的。相关样品表现出最大的光赋予双折射,并且似乎有利于潜在的应用。

In this work, nonlinear optical (NLO) studies of nickel oxide doped (ranging from 0.2 to 1.0 mol%) Li2SO4-MgO-P2O5 glasses are reported. A combination of femtosecond (fs) laser, as a pumping light source and a high-accuracy polarimeter with low power probing laser, is used to investigate the light-induced optical anisotropy (OA) in these glass materials. The light-induced birefringence (LIB) exhibits slow relaxation tendency up to about 10 s suggesting on anisotropic photorefractive effect evidently dominated fast Kerr effect. This behavior is evaluated in the light of other results reported recently and is explained by the glass polymerization mechanisms. The photorefractive birefringence increases with increase of the quantity of NiO up to 0.8 mol% and it is attributed to the enhanced degree of depolymerization of the glass network due to the hike in the concentration of Ni2+ ions that occupy octahedral (Oh) positions. Further increase of NiO content (>0.8 mol%) causes, however, a certain decrease of the photorefractive birefringence. Notable change in concentration trend is interpreted by rising of phonon losses due to increasing portion of the nickel ions occupying tetrahedral (Th) sites that facilitates the polymerization of the glass network. The doped glasses with the NiO content of about 0.8 mol% may be considered as optimal in the sense of photorefractive efficiency. Relevant samples exhibit largest magnitudes of the photorefractive birefringence and appear to be favorable for potential applications.

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