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Course, academic year 2023/2024
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Course of Special Experimental Method in Plasmas and Chemical Physics - NEVF536
Title: Kurz speciálních experimentálních metod ve fyzice plazmatu a fyzikální chemii
Guaranteed by: Department of Surface and Plasma Science (32-KFPP)
Faculty: Faculty of Mathematics and Physics
Actual: from 2021
Semester: summer
E-Credits: 2
Hours per week, examination: summer s.:2/0, C [DS]
Capacity: unlimited
Min. number of students: unlimited
4EU+: no
Virtual mobility / capacity: no
State of the course: taught
Language: English
Teaching methods: full-time
Teaching methods: full-time
Guarantor: doc. Mgr. Michal Fárník, Ph.D., DSc.
Mgr. Ondřej Votava, Ph.D.
Class: DS, fyzika plazmatu a ionizovaných prostředí
Classification: Physics > Surface Physics and P. of Ion.M.
Comes under: Pro rok 2019/2020 + 2021/2022...
Annotation -
Last update: T_KEVF (11.05.2012)
Survey of modern methods of molecular physics. The course is assigned to postgraduate students and it is held as one-week intensive lectures in academic years "odd/even," only.
Course completion requirements - Czech
Last update: doc. RNDr. Jiří Pavlů, Ph.D. (27.02.2018)

Zápočet je podmíněn docházkou. Povaha kontroly studia předmětu vylučuje opakování této kontroly.

Literature -
Last update: T_KEVF (11.05.2012)

H. Pauly: Atom, Molecule and Cluster Beams. Springer 2000.

B. Whitaker (Ed.): Imaging in Molecular dynamics. Cambridge University Press, 2003.

W. Demtröder: Laser Spectroscopy. Springer, 2003.

R. Schinke: Photodissociation Dynamics. Cambridge University Press, 1993.

Syllabus -
Last update: T_KEVF (11.05.2012)
Special experimental methods of molecular physics

1. Molecular beams
Effusive beams: fundamentals of gas kinetic theory, molecular flow through apertures and channels. Free jet expansions: fundamentals of gas dynamics, supersonic jets, beam characteristics, internal energy relaxation - cooling, condensation and clustering. Ion beams. Diagnostic methods, estimations of velocity and temperature in beams. Examples of modern beam experiments.

2. Molecular spectroscopy - Raman spectroscopy
Fundamentals of molecular structure and dynamics. Fundamentals of spectroscopies: vibrational, rotational, electronic. Theory of Raman scattering, rotational and vibrational Raman spectroscopy. Estimations of temperature of neutral and ionized particles in plasmas and molecular beams.

3. Ion and electron imaging
Fundamentals of imaging experiments. Time-of-flight methods, ion imaging, velocity mapping and slicing methods. Data processing methods. Abel transformation. Examples of imaging experiments.

4. Photodissociation experiments
Fundamentals of photodissociation dynamics, light absorption and photodiscociation. Time-of-flight and imaging methods in photodissociation experiments. Photodissociation in clusters. Typical photodissociation experiments.

 
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