Physics of solid-state laser materials. ([2020])
- Record Type:
- Book
- Title:
- Physics of solid-state laser materials. ([2020])
- Main Title:
- Physics of solid-state laser materials
- Further Information:
- Note: Zundu Luo, Yidong Huang.
- Other Names:
- Luo, Zundu
Huang, Yidong - Contents:
- Intro -- Preface -- About This Book -- Contents -- About the Authors -- 1 Energy Level of Free Ions -- 1.1 Energy Levels of the Single Electron in Atoms (Free Ions) -- 1.2 General Properties of Energy Level in Multi-electron of Free Ions -- 1.3 Energy Levels of Free Transition-Metal Ions -- 1.4 Energy Levels of Free Rare Earth Ions -- 1.5 Theory of Interactions in Rare Earth Ions -- References -- 2 Group Theory and Quantum Theory -- 2.1 Mathematical Description of the Symmetry -- 2.2 Basic Conception of the Group -- 2.3 Theory of Group Representations 2.4 Direct Product Group and Direct Product Representation -- 2.5 Sketches of the Group in Spectroscopy -- 2.5.1 Finite Group -- 2.5.2 Permutation Group -- 2.5.3 Continuous Groups -- 2.6 Point Group and Their Representation -- 2.7 Symmetry and Quantum Theory of the Ions in Solids -- 2.8 Full Rotation Group and Angular Momentum Theory -- 2.9 Irreducible Tensor Operators and the Calculation of Matrix Elements -- References -- 3 Rare Earth Ions in Materials -- 3.1 Crystal Field on the Active Ions -- 3.2 Energy Level Splitting of the Rare Earth Ions -- 3.3 Crystal Field Quantum Number 3.4 Group Chain Scheme Method in Crystal Field Analysis -- References -- 4 Theory of Radiative Transition -- 4.1 Interactions Between Active Ions and Radiation -- 4.2 Probability of Emission and Absorption Processes -- 4.3 Selection Rules for Radiative Transition -- 4.3.1 Selection Rules for Radiative Transition of Free Ions and Atoms -- 4.3.2Intro -- Preface -- About This Book -- Contents -- About the Authors -- 1 Energy Level of Free Ions -- 1.1 Energy Levels of the Single Electron in Atoms (Free Ions) -- 1.2 General Properties of Energy Level in Multi-electron of Free Ions -- 1.3 Energy Levels of Free Transition-Metal Ions -- 1.4 Energy Levels of Free Rare Earth Ions -- 1.5 Theory of Interactions in Rare Earth Ions -- References -- 2 Group Theory and Quantum Theory -- 2.1 Mathematical Description of the Symmetry -- 2.2 Basic Conception of the Group -- 2.3 Theory of Group Representations 2.4 Direct Product Group and Direct Product Representation -- 2.5 Sketches of the Group in Spectroscopy -- 2.5.1 Finite Group -- 2.5.2 Permutation Group -- 2.5.3 Continuous Groups -- 2.6 Point Group and Their Representation -- 2.7 Symmetry and Quantum Theory of the Ions in Solids -- 2.8 Full Rotation Group and Angular Momentum Theory -- 2.9 Irreducible Tensor Operators and the Calculation of Matrix Elements -- References -- 3 Rare Earth Ions in Materials -- 3.1 Crystal Field on the Active Ions -- 3.2 Energy Level Splitting of the Rare Earth Ions -- 3.3 Crystal Field Quantum Number 3.4 Group Chain Scheme Method in Crystal Field Analysis -- References -- 4 Theory of Radiative Transition -- 4.1 Interactions Between Active Ions and Radiation -- 4.2 Probability of Emission and Absorption Processes -- 4.3 Selection Rules for Radiative Transition -- 4.3.1 Selection Rules for Radiative Transition of Free Ions and Atoms -- 4.3.2 Selection Rules for Radiative Transition of Ions in Materials -- References -- 5 Spectroscopic Parameter and Their Calculation -- 5.1 Absorption Coefficient, Absorption (Emission) Cross-Section, and Oscillator Strength 5.2 Analysis of the Absorption Coefficients of Anisotropic Crystal -- 5.3 Judd-Ofelt Approximation and Related Parameter -- 5.4 Spectroscopic Parameter Calculation of Rare Earth Ion in Crystal -- 5.5 Hypersensitive Transitions -- References -- 6 Phonon and Spectral Line -- 6.1 Quantization of Lattice Vibration-Phonon -- 6.2 Phonon Emission and Absorption in the Optical Transition -- 6.3 Main Mechanisms of the Thermal Spectral Line Broadening and Shifting -- 6.4 The Contribution of Single-Phonon Absorption (Emission) to the Spectral Linewidth 6.5 The Contribution of Phonon Raman Scattering to the Spectral Linewidth -- 6.6 Calculation of the Thermal Shifting of Spectral Lines -- 6.7 Examples for the Calculation of Thermal Spectral Line Broadening and Shifting -- References -- 7 Energy Levels and Spectroscopic Properties of Transition Metal Ions -- 7.1 Energy Levels and Spectral Properties of 3d1 Electron System -- 7.2 Energy Levels and Spectral Properties of 3d2 Electron System -- 7.3 Energy Levels and Spectral Properties of 3d3 Electronic System -- 7.4 Relative Intensity Analysis of R Line in Ruby Polarized Absorption Spectrum … (more)
- Publisher Details:
- Singapore : Springer
- Publication Date:
- 2020
- Extent:
- 1 online resource
- Subjects:
- 621.36/61
Solid-state lasers
Solid-state lasers
Electronic books
Electronic books - Languages:
- English
- ISBNs:
- 9789813296688
9813296682 - Related ISBNs:
- 9813296674
9789813296671 - Notes:
- Note: Includes bibliographical references and index.
- Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
- Access Usage:
- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.511361
- Ingest File:
- 03_090.xml