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Investigation of point defects in lithium niobate by electron spin resonance, electron nuclear double resonance, and optical absorption.

机译:通过电子自旋共振,电子核双共振和光吸收研究铌酸锂中的点缺陷。

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摘要

Scope and method of study. The objective of this study is to investigate the point defects in a series of LiNbO{dollar}sb3{dollar} crystals which are either undoped, co-doped with magnesium and iron, or titanium doped. Electron spin resonance (ESR), electron nuclear double resonance (ENDOR), and optical absorption techniques were used to study the point defects produced in these materials by x-irradiation and high-temperature reducing treatments.; Findings and conclusions. Room-temperature irradiation of LiNbO{dollar}sb3{dollar} with x-rays converted Fe{dollar}sp{lcub}3+{rcub}{dollar} ions to Fe{dollar}sp{lcub}2+{rcub}{dollar} ions. Thermal annealing to approximately 120{dollar}spcirc{dollar}C reversed this process. Separate experiments in which LiNbO{dollar}sb3{dollar}:Fe,Mg were reduced at high temperature in an argon atmosphere revealed the conversion of Fe{dollar}sp{lcub}3+{rcub}{dollar} ions to Fe{dollar}sp{lcub}2+{rcub}{dollar} ions as well as the removal of the infrared absorption band due to OH{dollar}sp-{dollar} molecules and the production of absorption bands at 1300 nm and 460 nm. Two different environments for Fe{dollar}sp{lcub}3+{rcub}{dollar} ions in LiNbO{dollar}sb3{dollar}:Fe,Mg crystals are suggested by 35-GHz electron spin resonance results.; Reduction of LiNbO{dollar}sb3{dollar}:Ti samples in an argon atmosphere converts Ti{dollar}sp{lcub}4+{rcub}{dollar} ions to Ti{dollar}sp{lcub}3+{rcub}{dollar} ions. Optical absorption data from reduced samples reveal absorption bands at 660 nm and 450 nm. Samples subjected to ionizing radiation at 77 K also show the conversion of Ti{dollar}sp{lcub}4+{rcub}{dollar} ions to Ti{dollar}sp{lcub}3+{rcub}{dollar} ions. Optical absorption of 77-K x-irradiated samples reveals two overlapping absorption bands near 450 and 510 nm.; ENDOR experiments on Ti{dollar}sp{lcub}3+{rcub}{dollar} ions in a LiNbO{dollar}sb3{dollar}:Ti sample irradiated at 77 K suggests an environment different from that found for Ti{dollar}sp{lcub}3+{rcub}{dollar} ions in an argon-reduced LiNbO{dollar}sb3{dollar}:Ti sample.
机译:研究范围和方法。这项研究的目的是研究一系列未掺杂,掺有镁和铁或掺钛的LiNbO {sb3 {dollar}晶体中的点缺陷。电子自旋共振(ESR),电子核双共振(ENDOR)和光吸收技术被用于研究通过x射线和高温还原处理在这些材料中产生的点缺陷。结论和结论。用X射线将Fe {dollar} sp {lcub} 3+ {rcub} {dollar}离子转换为Fe {dollar} sp {lcub} 2+ {rcub}的X射线对LiNbO {dollar} sb3 {dollar}的室温辐射{美元}离子。热退火至约120 {spC {dollar} C逆转了该过程。在氩气气氛下于高温下还原LiNbO {dollar} sb3 {dollar}:Fe,Mg的单独实验表明,Fe {dollar} sp {lcub} 3+ {rcub} {dollar}离子转化为Fe {dollar } sp {lcub} 2+ {rcub} {dollar}离子以及由于OH {dollar} sp- {dollar}分子引起的红外吸收带的去除以及在1300 nm和460 nm处吸收带的产生。 35 GHz电子自旋共振结果表明,LiNbO {sb3 {dollar}:Fe,Mg晶体中的Fe {dollar} sp {lcub} 3+ {rcub} {dollar}离子有两种不同的环境。 LiNbO {dollar} sb3 {dollar}的还原:在氩气氛中,Ti样品将Ti {dollar} sp {lcub} 4+ {rcub} {dollar}离子转换为Ti {dollar} sp {lcub} 3+ {rcub} {美元}离子。来自还原样品的光吸收数据揭示了在660 nm和450 nm处的吸收带。在77 K受到电离辐射的样品中,Ti {dollar} sp {lcub} 4+ {rcub} {dollar}离子也转换为Ti {dollar} sp {lcub} 3+ {rcub} {dollar}离子。 77-K X辐照样品的光吸收显示在450和510 nm附近有两个重叠的吸收带。对LiNbO {dollar} sb3 {dollar}:Ti样品中的Ti {dollar} sp {lcub} 3+ {rcub} {dollar}离子进行ENDOR实验:Ti样品在77 K辐照下表明其环境不同于Ti {dollar} sp氩气还原的LiNbO {dolb} sb3 {dollar}:Ti样品中的{lcub} 3+ {rcub} {dollar}离子。

著录项

  • 作者

    Hantehzadeh, Mohammad Reza.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 84 p.
  • 总页数 84
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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