Ćwiczenia 1 (9.10.2018) [pdf]
Notatki: [pdf]
Ćwiczenia 2 (16.10.2018) [pdf] Notatki: [pdf]
Ćwiczenia 3 (23.10.2018) [pdf] Notatki: [pdf]
Ćwiczenia 4 (30.10.2018) [pdf] Notatki: [pdf]
Ćwiczenia 5 (6.11.2018) [pdf] Notatki: [pdf]
Ćwiczenia 6 (13.11.2018) [pdf] Notatki: [pdf]
Ćwiczenia 7 (20.11.2018) [pdf] Notatki: [pdf]
Ćwiczenia 8 (27.11.2018) [pdf] Notatki: [pdf]
Ćwiczenia 9 (4.12.2018) [pdf] Notatki: [pdf]
Ćwiczenia 10 (11.12.2018) [pdf] Notatki: [pdf]
Ćwiczenia 11 (18.12.2018) [pdf] Notatki: [pdf]
Kolokwium (7.01.2019) [pdf] Rozwiązania: [pdf]
Ćwiczenia 12 (8.01.2019) [pdf] Notatki: [pdf]
Ćwiczenia 13 (15.01.2019) [pdf] Notatki: [pdf]
Ćwiczenia 14 (22.01.2019) [pdf] Notatki: [pdf]
Egzamin (29.01.2019) [pdf] Rozwiązania: [pdf]
F. Wilczek, "Quantum Mechanics of Fractional-Spin Particles", Phys. Rev. Lett. 49, 957 (1982) [pdf]
P. W. Anderson, "More Is Different", Science 177, 393 (1972) [pdf]
J. C. Slater & G. F. Koster, "Simplified LCAO Method for the Periodic Potential Problem", Rev. Mod. Phys. 94, 1498 (1954) [pdf]
F. D. M. Haldane, "Nobel Lecture: Topological quantum matter", Rev. Mod. Phys. 89, 040502 (2017) [pdf]
E. Kolley, W. Kolley, "Derivation of Attractive Electron‐Electron Interactions for Superconductivity via Canonical Transformations", Ann. Phys. 502 150 (1990) [pdf]
N. N. Bogoljubov, "On a new method in the theory of superconductivity", Il Nuovo Cimento. 7 794 (1958) [pdf]
J. G. Valatin, "Comments on the theory of superconductivity", Il Nuovo Cimento. 7 843 (1958) [pdf]
J. Bardeen, L. N. Cooper, J. R. Schrieffer, "Theory of Superconductivity", Phys. Rev. 108 1175 (1957) [pdf]
Zbiory zadań:
Zbiór zadań z mechaniki kwantowej – J.B. Brojan, J. Mostowski, K. Wódkiewicz (PWN 1978)
Practical Quantum Mechanics, t. 1 i 2- Siegfried Flugge (Springer Verlag 1971)
Problems and Solutions on Quantum Mechanics Edited by Yung-Kuo Lim (World Scientific)
Solid State Physics – Problems and Solutions - Laszlo Mihaly, Michael C. Martin (John Wiley 1996)
Функции Грина. Теория и практика - L. S. Levitov, A. V. Shytov
oraz zadania z poniższych podręczników.
Podręczniki:
L.D. Landau i E.M. Lifszyc, Mechanika kwantowa, teoria nierelatywistyczna
E.M. Lifszyc i L.P. Pitajewski, Fizyka statystyczna (tom 2), Teoria materii skondensowanej
J.J. Sakurai, Modern Quantum Mechanics
C. Cohen-Tannoudji, B. Diu i F. Laloë, Quantum Mechanics. Vol. 1 & 2
A.I. Fetter i J.D. Walecka, Kwantowa teoria układów wielu ciał
H. Bruus i K. Flensberg, Many-Body Quantum Theory in Condensed Matter Physics
P.L. Taylor i O. Heinonen, A Quantum Approach to Condensed Matter Physics
R.A. Jishi, Feynman Diagram Techniques in Condensed Matter Physics
W. Nolting, Fundamentals of Many-body Physics: Principles and Methods
P. Fazekas, Lecture Notes on Electron Correlations and Magnetism
J.W. Negele i H. Orland, Quantum Many-Particle Systems
A. Altland i B. Simons, Condensed Matter Field Theory
L.P. Kadanoff i G. Baym, Quantum Statistical Mechanics
R.D. Mattuck, A guide to Feynman diagrams in the many-body problems
S.M. Barnett, Quantum information