Gurantor department | Department of Physics | Credits | 4 |

Subject guarantor | Doc. Dr. RNDr. Petr Alexa | Subject version guarantor | Doc. Dr. RNDr. Petr Alexa |

Study level | undergraduate or graduate | Requirement | Compulsory |

Year | 1 | Semester | winter |

Study language | English | ||

Year of introduction | 2022/2023 | Year of cancellation | |

Intended for the faculties | USP, FMT | Intended for study types | Master, Follow-up Master |

Instruction secured by | |||
---|---|---|---|

Login | Name | Tuitor | Teacher giving lectures |

ALE02 | Doc. Dr. RNDr. Petr Alexa | ||

BEZ0059 | Ing. Iva Tkáčová, Ph.D. |

Extent of instruction for forms of study | ||
---|---|---|

Form of study | Way of compl. | Extent |

Full-time | Credit and Examination | 2+1 |

The subject follows the previously taught subject 'Introduction to quantum physics and chemistry'. Its goal is to introduce more advance chapters of quantum mechanics such as matrix representation of quantum mechanics, additivity of angular momenta, perturbation theory, probability of transition in two-level system (e.g. photon absorption) or second quantization and application of quantum mechanics, such as quantum cryptography and quantum teleportation.

Lectures

Tutorials

- matrix representation of quantum mechanics
- spin, magnetic moment, ladder operators, summing up of angular moments, Clebch-Gordan coefficients
- perturbation theory (spin-orbit interaction), time-dependent perturbation, Fermi golden rule
- interaction of two-level system with electromagnetic field.
- second quantization
- two- and more-electrons' wave function, Slater determinant
- quantum entanglement, Bell inequilities, EPR paradox, quantum quantum crypthograhy, quantum teleportation
- limits of Schrodinger equation, Dirac equation

1. PHILLIPS, Anthony C. Introduction to quantum mechanics. Chichester: Wiley,
c2003. Manchester physics series. ISBN 0-470-85324-7.
2. SINGH, Jasprit. Quantum mechanics: fundamentals and applications to technology.
Weinheim: Wiley-VCH, c2004. Physics textbook. ISBN 0-471-15758-9.
3. EMERZBACHER,E. Quantum mechanics, John Wiley & Sons (2001)

1. SAKURAI, J.J. NAPOLITANO J.J: Modern Quantum Mechanics (Addison-Wesley, 2011)
2. PHILLIPS, Anthony C. Introduction to quantum mechanics. Chichester: Wiley,
c2003. Manchester physics series. ISBN 0-470-85324-7.
3. LEVI, A. F. J. Applied quantum mechanics. 2nd ed. Cambridge: Cambridge
University Press, 2006. ISBN 0-521-86096-2.

Written and oral exam.

The subject follows the previously taught subject 'Introduction to quantum physics and chemistry'. Its goal is to introduce more advance chapters of quantum mechanics such as matrix representation of quantum mechanics, additivity of angular momenta, perturbation theory, probability of transition in two-level system (e.g. photon absorption) or second quantization and application of quantum mechanics, such as quantum cryptography and quantum teleportation.

Subject code | Abbreviation | Title | Requirement |
---|---|---|---|

9360-0130 | KFCH | Introduction to Quantum Physic and Chemistry Theory | Recommended |

Subject has no co-requisities.

- matrix representation of quantum mechanics
- spin, magnetic moment, ladder operators, summing up of angular moments, Clebch-Gordan coefficients
- perturbation theory (spin-orbit interaction), time-dependent perturbation, Fermi golden rule
- interaction of two-level system with electromagnetic field
- second quantization
- two- and more-electrons' wave function, Slater determinant
- quantum entanglement, Bell inequilities, EPR paradox, quantum quantum crypthograhy, quantum teleportation
- limits of Schrodinger equation, Dirac equation

Task name | Type of task | Max. number of points
(act. for subtasks) | Min. number of points | Max. počet pokusů |
---|---|---|---|---|

Credit and Examination | Credit and Examination | 100 (100) | 51 | |

Credit | Credit | 30 | 16 | |

Examination | Examination | 70 | 21 | 3 |

Show history

Conditions for subject completion and attendance at the exercises within ISP: Completion of all mandatory tasks within individually agreed deadlines.

Show history

Academic year | Programme | Branch/spec. | Spec. | Zaměření | Form | Study language | Tut. centre | Year | W | S | Type of duty | |
---|---|---|---|---|---|---|---|---|---|---|---|---|

2024/2025 | (N0719A270003) Nanotechnology | P | English | Ostrava | 1 | Compulsory | study plan | |||||

2023/2024 | (N0719A270003) Nanotechnology | P | English | Ostrava | 1 | Compulsory | study plan | |||||

2022/2023 | (N0719A270003) Nanotechnology | P | English | Ostrava | 1 | Compulsory | study plan |

Block name | Academic year | Form of study | Study language | Year | W | S | Type of block | Block owner |
---|

Předmět neobsahuje žádné hodnocení.