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Max Born, Kun Huang (²¨¶÷£¬ »ÆÀ¥) ¡°Dynamical Theory of_Crystal Lattices¡± ¡¶¾§¸ñ¶¯Á¦Ñ§ÀíÂÛ¡· ºÜÏÔÈ»£¬Õâ±¾ÊéÊǾ§¸ñ¶¯Á¦Ñ§Ñо¿ÕßµÄÊ¥¾ºÍ¸£ÒôÊ飡 ÖÁ½ñ£¬Ò²ÐíÓÀÔ¶Ò²²»»á±»³¬Ô½£¡ ²»¹ý£¬Ö®Ç°ÔÚСľ³æÒ»Ö±Ã»ÕÒµ½Õâ±¾Ê飬Òò´ËÔڵõ½ ºóµÄµÚһʱ¼ä£¬¾ö¶¨ÉÏ´«£¬·½±ãºóÀ´ÕßÔĶÁºÍĤ°Ý£¡ (¸½¼þÖÐÖ»¸ø³öÁ˱¾ÊéµÄĿ¼£¬È«ÊépdfÇëÔÚÏÂÃæµÄÁ´½ÓÖÐÏÂÔØ£¡) ÏÂÔØµØÖ·: http://ddl.escience.cn/f/DiQ0 http://ddl.escience.cn/f/DiQ0 ÌáÈ¡Âë: wuvuyy Ŀ¼£º PART I: ELEMENTARY THEORIES I. ATOMIC FORCES 1. Theoretical Considerations 2. Ionic Radii 3. Heuristic Expressions for Lattice Energies Il. LATTICE VIBRATIONS 4. Simple Approximate Treatment of Thermodynamical Behavior 5. Vibrations of a Diatomic Chain 6. Frequency Spectrum of Lattice Vibrations and Specific Heats 7. Long Lattice Vibrations in the Optical Branches 8. Infrared Dispersion and the Retardation Effect on Lattice Vibrations 9. Atomic Theory of Long Optical Vibrations and Infrared Dispersion 10. Experimental Aspect of Infrared Dispersion by Ionic Crystals III. ELASTICITY AND STABILITY 11. Homogeneous Deformation and the Elastic Constants 12. Mechanical Stability of Simple Lattices 13. Relative Stability and Polymorphism PART II: GENERAL THEORIES IV. QUANTUM MECHANICAL FOUNDATION 14. Quantum Mechanics of Molecular Systems 15. Normal Coordinate 16. Statistical Mechanics of Systems of Oscillators 17. Statistical Mechanics of a Molecular System under External Force 18. Static Polarizability and Polarizability in Variable Fields 19. The Rayleigh and Raman Scattering of Light 20. Placzek's Approximation 21. Expansion of the Optical Parameters and the Classification of Optical Effects V. THE METHOD OF LONG WAVES 22. The Geometry of Perfect Lattices 23. The Infinite Lattice Model and General Invariance Relations 24. Lattice Waves 25. Failure of the Method of Homogeneous Deformation and the Method of Long Waves 26. Long Acoustic Vibrations 27. The Elastic Constants for Non-ionic Crystals 28. Equilibrium Conditions (vanishing stresses) and Further Invariance Relations 29. Central Forces 30. Coulomb Field in a Dipole Lattices -- Ewald's Method and Separation of the Macroscopic Field 31. Acoustic Vibrations in Ionic Lattices (rigid ion model) 32. The Elastic and Piezoelectric Constants and the Dielectric Tensor 33. Phenomenological Discussion of the Dispersion Formula for Complex Lattices 34. Long Optical Vibrations in Ionic Lattices (rigid ion model) 35. Polarizable Ions Vl. THE FREE ENERGY 36. The Specification of Finite Strains 37. Phenomenological Discussion of the Free Energy of a Lattice 38. Normal Coordinates of a Lattice 39. Normalization of Physical Parameters, Selection Rules and Expansion Methods 40. The Normalized Hamiltonian 41. The Free Energy 42. The Static (Non-vibrating) Lattice 43. The T^4 law VII. THE OPTICAL EFFECTS 44. The Microscopic Theory of Dispersion 45. The Local Treatment of Optical Effects 46. The Effect of the Anharmonic Potential on Dispersion 47. The Dispersion Formula with Damping 48. Tbc Effect of the Second-order Electric Moment 4.9. The First and Second-order Raman effects 50. The Brillouin Components of the Thermal Scattering of Light |
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