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Quantum collision theory of nonrelativistic particles : an introduction / / Reiner M. Dreizler, Tom Kirchner, and Cora S. Lüdde
Quantum collision theory of nonrelativistic particles : an introduction / / Reiner M. Dreizler, Tom Kirchner, and Cora S. Lüdde
Autore Dreizler Reiner M.
Pubbl/distr/stampa Berlin, Germany : , : Springer, , [2022]
Descrizione fisica 1 online resource (236 pages)
Disciplina 523.2
Soggetto topico Collisions (Nuclear physics)
Nonrelativistic quantum mechanics
ISBN 3-662-65591-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910620196803321
Dreizler Reiner M.  
Berlin, Germany : , : Springer, , [2022]
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Quantum collision theory of nonrelativistic particles : an introduction / / Reiner M. Dreizler, Tom Kirchner, and Cora S. Lüdde
Quantum collision theory of nonrelativistic particles : an introduction / / Reiner M. Dreizler, Tom Kirchner, and Cora S. Lüdde
Autore Dreizler Reiner M.
Pubbl/distr/stampa Berlin, Germany : , : Springer, , [2022]
Descrizione fisica 1 online resource (236 pages)
Disciplina 523.2
Soggetto topico Collisions (Nuclear physics)
Nonrelativistic quantum mechanics
ISBN 3-662-65591-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNISA-996495162303316
Dreizler Reiner M.  
Berlin, Germany : , : Springer, , [2022]
Materiale a stampa
Lo trovi qui: Univ. di Salerno
Opac: Controlla la disponibilità qui
Quantum Mechanics : Non-Relativistic Theory
Quantum Mechanics : Non-Relativistic Theory
Autore Landau L D
Edizione [3rd ed.]
Pubbl/distr/stampa Burlington, : Elsevier Science, 1981
Descrizione fisica 1 online resource (694 p.)
Disciplina 530.1/2
530.12
551.312
Altri autori (Persone) LifshitzE.M
Soggetto topico Nonrelativistic quantum mechanics
Physics
Physical Sciences & Mathematics
Atomic Physics
ISBN 1-299-40297-6
0-08-050348-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Quantum Mechanics: Non-Relativistic Theory; Copyright Page; Table of Contents; From the Preface to the first English edition; Preface to the second English edition; Preface to the third Russian edition; Editor's Preface to the fourth Russian edition; Notation; CHAPTER I. THE BASIC CONCEPTS OF QUANTUM MECHANICS; 1. The uncertainty principle; 2. The principle of superposition; 3. Operators; 4. Addition and multiplication of operators; 5. The continuous spectrum; 6. The passage to the limiting case of classical mechanics; 7. The wave function and measurements
CHAPTER II. ENERGY AND MOMENTUM8. The Hamiltonian operator; 9. The differentiation of operators with respect to time; 10. Stationary states; 11. Matrices; 12. Transformation of matrices; 13. The Heisenberg representation of operators; 14. The density matrix; 15. Momentum; 16. Uncertainty relations; CHAPTER III. SCHRODINGER'S EQUATION; 17. Schrodinger's equation; 18. The fundamental properties of Schrödinger's equation; 19. The current density; 20. The variational principle; 21. General properties of motion in one dimension; 22. The potential well; 23. The linear oscillator
24. Motion in a homogeneous field25. The transmission coefficient; CHAPTER IV. ANGULAR MOMENTUM; 26. Angular momentum; 27. Eigenvalues of the angular momentum; 28. Eigenfunctions of the angular momentum; 29. Matrix elements of vectors; 30. Parity of a state; 31. Addition of angular momenta; CHAPTER V. MOTION IN A CENTRALLY SYMMETRIC FIELD; 32. Motion in a centrally symmetric field; 33. Spherical waves; 34. Resolution of a plane wave; 35. Fall of a particle to the centre; 36. Motion in a Coulomb field (spherical polar coordinates)
37. Motion in a Coulomb field (parabolic coordinates)CHAPTER VI. PERTURBATION THEORY; 38. Perturbations independent of time; 39. The secular equation; 40. Perturbations depending on time; 41. Transitions under a perturbation acting for a finite time; 42. Transitions under the action of a periodic perturbation; 43. Transitions in the continuous spectrum; 44. The uncertainty relation for energy; 45. Potential energy as a perturbation; CHAPTER VII. THE QUASI-CLASSICAL CASE; 46. The wave function in the quasi-classical case; 47. Boundary conditions in the quasi-classical case
48. Bohr and Sommerfeld's quantization rule49. Quasi-classical motion in a centrally symmetric field; 50. Penetration through a potential barrier; 51. Calculation of the quasi-classical matrix elements; 52. The transition probability in the quasi-classical case; 53. Transitions under the action of adiabatic perturbations; CHAPTER VIII. SPIN; 54. Spin; 55. The spin operator; 56. Spinors; 57. The wave functions of particles with arbitrary spin; 58. The operator of finite rotations; 59. Partial polarization of particles; 60. Time reversal and Kramers' theorem
CHAPTER IX. IDENTITY OF PARTICLES
Altri titoli varianti Quantum mechanics
Quantum Mechanics, Volume 3
Quantum Mechanics Non-Relativistic Theory
Record Nr. UNINA-9911006512703321
Landau L D  
Burlington, : Elsevier Science, 1981
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Quantum mechanics : non-relativistic theory / / by L.D. Landau and E.M. Lifshitz ; translated from the Russian by J.B. Sykes and J.S. Bell
Quantum mechanics : non-relativistic theory / / by L.D. Landau and E.M. Lifshitz ; translated from the Russian by J.B. Sykes and J.S. Bell
Autore Landau L. D (Lev Davidovich), <1908-1968, >
Edizione [3rd ed.]
Pubbl/distr/stampa Oxford ; ; New York : , : Pergamon Press, , 1977
Descrizione fisica 1 online resource (1718 p.)
Disciplina 530.1/2
Collana Their Course of theoretical physics
Soggetto topico Nonrelativistic quantum mechanics
Soggetto genere / forma Electronic books.
ISBN 1-4831-4912-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover image; Title page; Table of Contents; Other Titles in the Course of Theoretical Physics; Copyright; FROM THE PREFACE TO THE FIRST ENGLISH EDITION; PREFACE TO THE SECOND ENGLISH EDITION; PREFACE TO THE THIRD RUSSIAN EDITION; NOTATION; Chapter 1: THE BASIC CONCEPTS OF QUANTUM MECHANICS; Publisher Summary; 1. The uncertainty principle; 2. The principle of superposition; 3. Operators; 4. Addition and multiplication of operators; 5. The continuous spectrum; 6. The passage to the limiting case of classical mechanics; 7. The wave function and measurements; Chapter 2: ENERGY AND MOMENTUM
Publisher Summary8. The Hamiltonian operator; 9. The differentiation of operators with respect to time; 10. Stationary states; 11. Matrices; 12. Transformation of matrices; 13. The Heisenberg representation of operators; 14. The density matrix; 15. Momentum; 16. Uncertainty relations; Chapter 3: SCHRÖDINGER'S EQUATION; Publisher Summary; 17. Schrödinger's equation; 18. The fundamental properties of Schrödinger's equation; 19. The current density; 20. The variational principle; 21. General properties of motion in one dimension; 22. The potential well; 23. The linear oscillator
24. Motion in a homogeneous field25. The transmission coefficient; Chapter 4: ANGULAR MOMENTUM; Publisher Summary; 26. Angular momentum; 27. Eigenvalues of the angular momentum; 28. Eigenfunctions of the angular momentum; 29. Matrix elements of vectors; 30. Parity of a state; 31. Addition of angular momenta; Chapter 5: MOTION IN A CENTRALLY SYMMETRIC FIELD; Publisher Summary; 32. Motion in a centrally symmetric field; 33. Spherical waves; 34. Resolution of a plane wave; 35. Fall of a particle to the centre; 36. Motion in a Coulomb field (spherical polar coordinates)
37. Motion in a Coulomb field (parabolic coordinates)Chapter 6: PERTURBATION THEORY; Publisher Summary; 38. Perturbations independent of time; 39. The secular equation; 40. Perturbations depending on time; 41. Transitions under a perturbation acting for a finite time; 42. Transitions under the action of a periodic perturbation; 43. Transitions in the continuous spectrum; 44. The uncertainty relation for energy; 45. Potential energy as a perturbation; Chapter 7: THE QUASI-CLASSICAL CASE; Publisher Summary; 46. The wave function in the quasi-classical case
47. Boundary conditions in the quasi-classical case48. Bohr and Sommerfeld's quantization rule; 49. Quasi-classical motion in a centrally symmetric field; 50. Penetration through a potential barrier; 51. Calculation of the quasi-classical matrix elements; 52. The transition probability in the quasi-classical case; 53. Transitions under the action of adiabatic perturbations; Chapter 8: SPIN; Publisher Summary; 54. Spin; 55. The spin operator; 56. Spinors; 57. The wave functions of particles with arbitrary spin; 58. The operator of finite rotations
59. Partial polarization of particles
Record Nr. UNINA-9910480589803321
Landau L. D (Lev Davidovich), <1908-1968, >  
Oxford ; ; New York : , : Pergamon Press, , 1977
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Quantum mechanics : non-relativistic theory / / by L.D. Landau and E.M. Lifshitz ; translated from the Russian by J.B. Sykes and J.S. Bell
Quantum mechanics : non-relativistic theory / / by L.D. Landau and E.M. Lifshitz ; translated from the Russian by J.B. Sykes and J.S. Bell
Autore Landau L. D (Lev Davidovich), <1908-1968, >
Edizione [3rd ed.]
Pubbl/distr/stampa Oxford ; ; New York : , : Pergamon Press, , 1977
Descrizione fisica 1 online resource (1718 p.)
Disciplina 530.1/2
Collana Their Course of theoretical physics
Soggetto topico Nonrelativistic quantum mechanics
ISBN 1-4831-4912-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover image; Title page; Table of Contents; Other Titles in the Course of Theoretical Physics; Copyright; FROM THE PREFACE TO THE FIRST ENGLISH EDITION; PREFACE TO THE SECOND ENGLISH EDITION; PREFACE TO THE THIRD RUSSIAN EDITION; NOTATION; Chapter 1: THE BASIC CONCEPTS OF QUANTUM MECHANICS; Publisher Summary; 1. The uncertainty principle; 2. The principle of superposition; 3. Operators; 4. Addition and multiplication of operators; 5. The continuous spectrum; 6. The passage to the limiting case of classical mechanics; 7. The wave function and measurements; Chapter 2: ENERGY AND MOMENTUM
Publisher Summary8. The Hamiltonian operator; 9. The differentiation of operators with respect to time; 10. Stationary states; 11. Matrices; 12. Transformation of matrices; 13. The Heisenberg representation of operators; 14. The density matrix; 15. Momentum; 16. Uncertainty relations; Chapter 3: SCHRÖDINGER'S EQUATION; Publisher Summary; 17. Schrödinger's equation; 18. The fundamental properties of Schrödinger's equation; 19. The current density; 20. The variational principle; 21. General properties of motion in one dimension; 22. The potential well; 23. The linear oscillator
24. Motion in a homogeneous field25. The transmission coefficient; Chapter 4: ANGULAR MOMENTUM; Publisher Summary; 26. Angular momentum; 27. Eigenvalues of the angular momentum; 28. Eigenfunctions of the angular momentum; 29. Matrix elements of vectors; 30. Parity of a state; 31. Addition of angular momenta; Chapter 5: MOTION IN A CENTRALLY SYMMETRIC FIELD; Publisher Summary; 32. Motion in a centrally symmetric field; 33. Spherical waves; 34. Resolution of a plane wave; 35. Fall of a particle to the centre; 36. Motion in a Coulomb field (spherical polar coordinates)
37. Motion in a Coulomb field (parabolic coordinates)Chapter 6: PERTURBATION THEORY; Publisher Summary; 38. Perturbations independent of time; 39. The secular equation; 40. Perturbations depending on time; 41. Transitions under a perturbation acting for a finite time; 42. Transitions under the action of a periodic perturbation; 43. Transitions in the continuous spectrum; 44. The uncertainty relation for energy; 45. Potential energy as a perturbation; Chapter 7: THE QUASI-CLASSICAL CASE; Publisher Summary; 46. The wave function in the quasi-classical case
47. Boundary conditions in the quasi-classical case48. Bohr and Sommerfeld's quantization rule; 49. Quasi-classical motion in a centrally symmetric field; 50. Penetration through a potential barrier; 51. Calculation of the quasi-classical matrix elements; 52. The transition probability in the quasi-classical case; 53. Transitions under the action of adiabatic perturbations; Chapter 8: SPIN; Publisher Summary; 54. Spin; 55. The spin operator; 56. Spinors; 57. The wave functions of particles with arbitrary spin; 58. The operator of finite rotations
59. Partial polarization of particles
Record Nr. UNINA-9910789453603321
Landau L. D (Lev Davidovich), <1908-1968, >  
Oxford ; ; New York : , : Pergamon Press, , 1977
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Quantum mechanics : non-relativistic theory / / by L.D. Landau and E.M. Lifshitz ; translated from the Russian by J.B. Sykes and J.S. Bell
Quantum mechanics : non-relativistic theory / / by L.D. Landau and E.M. Lifshitz ; translated from the Russian by J.B. Sykes and J.S. Bell
Autore Landau L. D (Lev Davidovich), <1908-1968, >
Edizione [3rd ed.]
Pubbl/distr/stampa Oxford ; ; New York : , : Pergamon Press, , 1977
Descrizione fisica 1 online resource (1718 p.)
Disciplina 530.1/2
Collana Their Course of theoretical physics
Soggetto topico Nonrelativistic quantum mechanics
ISBN 1-4831-4912-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover image; Title page; Table of Contents; Other Titles in the Course of Theoretical Physics; Copyright; FROM THE PREFACE TO THE FIRST ENGLISH EDITION; PREFACE TO THE SECOND ENGLISH EDITION; PREFACE TO THE THIRD RUSSIAN EDITION; NOTATION; Chapter 1: THE BASIC CONCEPTS OF QUANTUM MECHANICS; Publisher Summary; 1. The uncertainty principle; 2. The principle of superposition; 3. Operators; 4. Addition and multiplication of operators; 5. The continuous spectrum; 6. The passage to the limiting case of classical mechanics; 7. The wave function and measurements; Chapter 2: ENERGY AND MOMENTUM
Publisher Summary8. The Hamiltonian operator; 9. The differentiation of operators with respect to time; 10. Stationary states; 11. Matrices; 12. Transformation of matrices; 13. The Heisenberg representation of operators; 14. The density matrix; 15. Momentum; 16. Uncertainty relations; Chapter 3: SCHRÖDINGER'S EQUATION; Publisher Summary; 17. Schrödinger's equation; 18. The fundamental properties of Schrödinger's equation; 19. The current density; 20. The variational principle; 21. General properties of motion in one dimension; 22. The potential well; 23. The linear oscillator
24. Motion in a homogeneous field25. The transmission coefficient; Chapter 4: ANGULAR MOMENTUM; Publisher Summary; 26. Angular momentum; 27. Eigenvalues of the angular momentum; 28. Eigenfunctions of the angular momentum; 29. Matrix elements of vectors; 30. Parity of a state; 31. Addition of angular momenta; Chapter 5: MOTION IN A CENTRALLY SYMMETRIC FIELD; Publisher Summary; 32. Motion in a centrally symmetric field; 33. Spherical waves; 34. Resolution of a plane wave; 35. Fall of a particle to the centre; 36. Motion in a Coulomb field (spherical polar coordinates)
37. Motion in a Coulomb field (parabolic coordinates)Chapter 6: PERTURBATION THEORY; Publisher Summary; 38. Perturbations independent of time; 39. The secular equation; 40. Perturbations depending on time; 41. Transitions under a perturbation acting for a finite time; 42. Transitions under the action of a periodic perturbation; 43. Transitions in the continuous spectrum; 44. The uncertainty relation for energy; 45. Potential energy as a perturbation; Chapter 7: THE QUASI-CLASSICAL CASE; Publisher Summary; 46. The wave function in the quasi-classical case
47. Boundary conditions in the quasi-classical case48. Bohr and Sommerfeld's quantization rule; 49. Quasi-classical motion in a centrally symmetric field; 50. Penetration through a potential barrier; 51. Calculation of the quasi-classical matrix elements; 52. The transition probability in the quasi-classical case; 53. Transitions under the action of adiabatic perturbations; Chapter 8: SPIN; Publisher Summary; 54. Spin; 55. The spin operator; 56. Spinors; 57. The wave functions of particles with arbitrary spin; 58. The operator of finite rotations
59. Partial polarization of particles
Record Nr. UNINA-9910809079903321
Landau L. D (Lev Davidovich), <1908-1968, >  
Oxford ; ; New York : , : Pergamon Press, , 1977
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui