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Handbook on the Physics and Chemistry of Rare Earths: Including Actinides.

Contributor(s): Publisher: [Place of publication not identified] : Elsevier Ltd. : North Holland, 2017Description: 1 online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 044463875X
  • 9780444638755
  • 9780444638809
  • 0444638806
Genre/Form: Additional physical formats: No titleOnline resources:
Contents:
Front Cover; Including Actinides; Copyright; Contents; Contributors; Preface; Chapter 295: Effect of Pressure on the Interplay Between Orbital and Magnetic Ordering, Kondo Effect, Valence Fluctuations, ...; Chapter 296: Rare-Earth-Doped Waveguide Amplifiers and Lasers; Chapter 297: Lanthanide Macrocyclic Complexes: Structure, Thermodynamics, Kinetics, and Applications; Contents of Volumes 1-50; Index of Contents of Volumes 1-51; Chapter 295: Effect of Pressure on the Interplay Between Orbital and Magnetic Ordering, Kondo Effect, Valence Fluctuation ...; 1. Introduction
2. Pressure-Induced Phase Ordering in 1-2-20 Rare-Earth Compounds Under High Pressure2.1. Nonmagnetic Kondo 1-2-20 Yb Compounds; 2.1.1. YbT2Zn20 (T=Fe, Co, Ru, Rh, Os, and Ir) at Ambient Pressure; 2.1.2. Pressure Effect for YbT2Zn20 (T=Co, Rh, and Ir) Compounds; 2.1.3. Pressure-Induced Magnetic Order for YbCo2Zn20; 2.2. Nonmagnetic Orbital-Ordered 1-2-20 Pr Compounds; 2.2.1. PrT2Al20 (T=V and Ti) at Ambient Pressure; 2.2.2. Pressure Effect for PrTi2Al20; 3. Fe-Based Rare-Earth Superconductors and Related Materials Under Pressure; 3.1. Introduction to Iron-Based Superconductors
2.3. Transition Cross Sections and Füchtbauer-Ladenburg Equation2.4. Natural and Integral Cross Section; 2.5. Linewidth Broadening and Reduction of Cross Section; 2.6. Temperature Dependence of Linewidth and Peak Cross Section; 2.7. Comparison of Cross Sections in Rare-Earth Ions and III-V Semiconductors; 3. Transition Cross Sections in Ytterbium-Doped Potassium Double Tungstates; 3.1. Peak Cross Section and Linewidth of the Yb3+ Central Line Transition; 3.2. Temperature Dependence of Yb3+ Transition Cross Sections in Potassium Double Tungstates; 4. Potassium Double Tungstate Epitaxial Layers
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Front Cover; Including Actinides; Copyright; Contents; Contributors; Preface; Chapter 295: Effect of Pressure on the Interplay Between Orbital and Magnetic Ordering, Kondo Effect, Valence Fluctuations, ...; Chapter 296: Rare-Earth-Doped Waveguide Amplifiers and Lasers; Chapter 297: Lanthanide Macrocyclic Complexes: Structure, Thermodynamics, Kinetics, and Applications; Contents of Volumes 1-50; Index of Contents of Volumes 1-51; Chapter 295: Effect of Pressure on the Interplay Between Orbital and Magnetic Ordering, Kondo Effect, Valence Fluctuation ...; 1. Introduction

2. Pressure-Induced Phase Ordering in 1-2-20 Rare-Earth Compounds Under High Pressure2.1. Nonmagnetic Kondo 1-2-20 Yb Compounds; 2.1.1. YbT2Zn20 (T=Fe, Co, Ru, Rh, Os, and Ir) at Ambient Pressure; 2.1.2. Pressure Effect for YbT2Zn20 (T=Co, Rh, and Ir) Compounds; 2.1.3. Pressure-Induced Magnetic Order for YbCo2Zn20; 2.2. Nonmagnetic Orbital-Ordered 1-2-20 Pr Compounds; 2.2.1. PrT2Al20 (T=V and Ti) at Ambient Pressure; 2.2.2. Pressure Effect for PrTi2Al20; 3. Fe-Based Rare-Earth Superconductors and Related Materials Under Pressure; 3.1. Introduction to Iron-Based Superconductors

2.3. Transition Cross Sections and Füchtbauer-Ladenburg Equation2.4. Natural and Integral Cross Section; 2.5. Linewidth Broadening and Reduction of Cross Section; 2.6. Temperature Dependence of Linewidth and Peak Cross Section; 2.7. Comparison of Cross Sections in Rare-Earth Ions and III-V Semiconductors; 3. Transition Cross Sections in Ytterbium-Doped Potassium Double Tungstates; 3.1. Peak Cross Section and Linewidth of the Yb3+ Central Line Transition; 3.2. Temperature Dependence of Yb3+ Transition Cross Sections in Potassium Double Tungstates; 4. Potassium Double Tungstate Epitaxial Layers

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