Fundamentals of Laser Spectroscopy for Atoms and Diatomic Molecules
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Fundamentals of Laser Spectroscopy for Atoms and Diatomic Molecules
Lucht, Robert P.
Cambridge University Press
12/2024
430
Dura
9781108837927
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1. Introduction: classical theory of electric-dipole radiative interactions; 2. Atomic structure and the quantum mechanics of angular momentum; 3. Structure of diatomic molecules; 4. Quantum mechanical analysis of the interaction of laser radiation with electric-dipole resonances; 5. Quantum mechanical analysis of single-photon electric-dipole resonances for diatomic molecules; 6. Absorption and emission spectroscopy; 7. Raman spectroscopy; 8. Coherent anti-stokes Raman scattering (cars) spectroscopy; Appendix 1. Spherical harmonics and radial wavefunctions for one-electron atoms; Appendix 2. Clebsch-Gordan coefficients, dipole moments, and spontaneous emission; Appendix 3. Properties and values for selected 3J symbols; Appendix 4. Properties and values for selected 6J symbols; Appendix 5. Allowed ls coupling terms for equivalent electrons; Appendix 6. Derivation of the higher order density matrix elements for doublet and triplet electronic levels; Appendix 7. Einstein coefficients for spontaneous emission for the x2?-a2?+ (0,0) bands of oh and no and the x3? - a3? (0,0) band of NH; Appendix 8. Effect of hyperfine splitting on radiative transition rates; Appendix 9. Voigt function values; references; Index.
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1. Introduction: classical theory of electric-dipole radiative interactions; 2. Atomic structure and the quantum mechanics of angular momentum; 3. Structure of diatomic molecules; 4. Quantum mechanical analysis of the interaction of laser radiation with electric-dipole resonances; 5. Quantum mechanical analysis of single-photon electric-dipole resonances for diatomic molecules; 6. Absorption and emission spectroscopy; 7. Raman spectroscopy; 8. Coherent anti-stokes Raman scattering (cars) spectroscopy; Appendix 1. Spherical harmonics and radial wavefunctions for one-electron atoms; Appendix 2. Clebsch-Gordan coefficients, dipole moments, and spontaneous emission; Appendix 3. Properties and values for selected 3J symbols; Appendix 4. Properties and values for selected 6J symbols; Appendix 5. Allowed ls coupling terms for equivalent electrons; Appendix 6. Derivation of the higher order density matrix elements for doublet and triplet electronic levels; Appendix 7. Einstein coefficients for spontaneous emission for the x2?-a2?+ (0,0) bands of oh and no and the x3? - a3? (0,0) band of NH; Appendix 8. Effect of hyperfine splitting on radiative transition rates; Appendix 9. Voigt function values; references; Index.
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