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Course, academic year 2023/2024
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Ultrafast laser spectroscopy - NOOE025
Title: Spektroskopie s vysokým časovým rozlišením
Guaranteed by: Department of Chemical Physics and Optics (32-KCHFO)
Faculty: Faculty of Mathematics and Physics
Actual: from 2023
Semester: winter
E-Credits: 3
Hours per week, examination: winter s.:2/0, Ex [HT]
Capacity: unlimited
Min. number of students: unlimited
4EU+: no
Virtual mobility / capacity: no
State of the course: taught
Language: Czech, English
Teaching methods: full-time
Teaching methods: full-time
Additional information: https://us04web.zoom.us/j/73619934332?pwd=a3FrdDgwMXRFQitJdDAwajlYV2V6Zz09
Guarantor: doc. RNDr. Martin Kozák, Ph.D.
Classification: Physics > Optics and Optoelectronics
Annotation -
Last update: RNDr. Vojtěch Kapsa, CSc. (05.05.2023)
Principles of spectroscopy with high time resolution (mainly femtosecond) is the topic of lecture. Techniques of ultrashosrt light pulse generation and their properties are reviewed. The overview of a variety of spectroscopic methods, their principles and applications (in semiconductor physics in particular), is a core of the lecture. In addition, the progress of attosecond optics and spectroscopy and time-resolved electron microscopy are discussed.
Course completion requirements -
Last update: prof. RNDr. Petr Malý, DrSc. (14.06.2019)

Oral examination.

Literature -
Last update: prof. RNDr. Petr Malý, DrSc. (02.05.2019)

J.-C. Diels, W. Rudolph: Ultrashort laser pulse phenomena, Elsevier, Heidelberg, 2006

C. D. Lin, Anh-Thu Le, Cheng Jin, Hui Wei: Attosecond and Strong-Field Physics: Principles and Applications, Cambridge University Press, Cambridge, 2018

J. Shah: Ultrafast Spectroscopy of Semiconductors and Semiconductor Nanostructures, Springer, Berlin, 1996

P. Hannaford, Ed.: Femtosecond Laser Spectroscopy, Springer, New York, 2005

S. Mukamel: Primciples of Nonlinear Optical Spectroscopy, Oxford University Press, Oxford, 1995

Rullière, Claude (Ed.): Femtosecond Laser Pulses: Principles and Experiments, Springer-Verlag, Berlin, 2005

Requirements to the exam - Czech
Last update: prof. RNDr. Petr Malý, DrSc. (08.10.2017)

Zkouška je ústní. Požadavky odpovídají sylabu přednášky v rozsahu prezentovaném na přednášce.

Syllabus -
Last update: prof. RNDr. Petr Malý, DrSc. (02.05.2023)

Introduction. description of ultrashort light pulses. Light pulse propagation.

Linear and nonlinear optics of ultrashort pulses. Pulse shaping.

Measurement of ultrashort light pulse properties.

Ultrafast lasers, principles of femtosecond pulse generation.

Overview of ultrafast processes in semiconductors.

Emission techniques-luminiscent measurements.

Pump and probe techniques.

Transient grating techniques.

Time-resolved Raman scattering

Coherent time-resolved spectroscopy.

Time- and angular-resolved photoelectron spectroscopy.

Attosecond spectroscopy.

Time-resolved electron microscopy and diffraction.

 
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