1862543216

1862543216



• Lecture:

Particular lectures contents

Number of hours

11. Fundamentals of Crystalography.

3

12. The Fundamental of One Electron Approximation. Bloch Function.

Brillouine Zonę.

3

13. Methods of Band Structure Calculations. Tight Binding and kp

Methods.

4

14. The Concept of Hole in a Solid State.

2

15. The Physical Properties of Degenerated Electron Gas in Metals.

2

16. The Electron and Hole Concentrations in Semiconductors and

Dielectric.

2

17. The Acoustic and Optical Phonons and Their Influence on the

Properties of Solid State.

4

18. Boltzman Kinetic Equation and Relaxation Time.

4

19. The Interaction of Electromagnetic Wave with Solid State. Complex

Mobility and Reflection Index.

2

20. Intra- and Inter- Band Transitions.

4

• Classes - the contents:

•    Seminars - the contents:

Laboratory - the contents: Students perform exercises in two or tree person groups. Laboratory covers fundamental optical and electrical (transport) experimental techniąues for solid State studies. In optical methods students perform measurements of absorption, reflectivity and photoluminescence in room and liquid nitrogen temperatures. Transport methods covers measurements of mobility of all type of solid States: metals, semiconductors and dielectrics as a function of temperaturę T=10-300K and magnetic field up to B=1T. Hall Effect and magneto resistance are studied. Students also study the dynamie of carriers in solid States.

•    Project - the contents:

•    Basic literaturę:

5.    L. Sosnowski, “Fizyka Ciała Stałego” t.l, Wydawnictwa Uniwersytetu Warszawskiego, Warszawa 1977

6.    C. Kittel, Wstęp do Fizyki Ciała Stałego, Państwowe Wydawnictwo Naukowe, Warszawa 1999

7.    H. łbach, H. Luth, Fizyka Ciała Stałego, Państwowe Wydawnictwo Naukowe. Warszawa 1996

8.    N.W. Ashcroft, N.D. Mermin, Fizyka Ciała Stałego, Państwowe Wydawnictwo Naukowe, Warszawa 1986

•    Additional literaturę:

3.    W. A. Harrison, Fizyka Ciała Stałego, Państwowe Wydawnictwo Naukowe, Warszawa 1975

4.    P. Yu, M. Cardona, Fundamentals of Semiconductors, Springer, Berlin 1996

•    Conditions of the course acceptance/credition: Examination

* - depending on a system of studies

10



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