Universität Wien

270260 VO Ultrafast and Multidimensional Laserspectroscopy (2024W)

4.00 ECTS (2.00 SWS), SPL 27 - Chemie

An/Abmeldung

Hinweis: Ihr Anmeldezeitpunkt innerhalb der Frist hat keine Auswirkungen auf die Platzvergabe (kein "first come, first served").

Details

Sprache: Deutsch, Englisch

Lehrende

Termine (iCal) - nächster Termin ist mit N markiert

Thursdays from 13 to 14.30 in SR2.
The preliminary meeting will take place on October 8th at 4 pm online. A link will be provided in moodle.

  • Donnerstag 03.10. 13:15 - 14:45 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP (Vorbesprechung)
  • Dienstag 15.10. 13:30 - 15:00 Seminarraum 4 Institut Physikalische Chemie HP Währinger Straße 42
  • Donnerstag 24.10. 13:00 - 14:30 Seminarraum 2 Währinger Straße 38 Dekanat 1. Stock
  • Donnerstag 31.10. 13:00 - 14:30 Seminarraum 2 Währinger Straße 38 Dekanat 1. Stock
  • Donnerstag 07.11. 13:00 - 14:30 Seminarraum 2 Währinger Straße 38 Dekanat 1. Stock
  • Donnerstag 14.11. 13:00 - 14:30 Seminarraum 2 Währinger Straße 38 Dekanat 1. Stock
  • Donnerstag 21.11. 13:00 - 14:30 Seminarraum 2 Währinger Straße 38 Dekanat 1. Stock
  • Donnerstag 28.11. 13:00 - 14:30 Seminarraum 2 Währinger Straße 38 Dekanat 1. Stock
  • Donnerstag 05.12. 13:00 - 14:30 Seminarraum 2 Währinger Straße 38 Dekanat 1. Stock
  • Donnerstag 12.12. 13:00 - 14:30 Seminarraum 2 Währinger Straße 38 Dekanat 1. Stock
  • Donnerstag 09.01. 13:00 - 14:30 Seminarraum 2 Währinger Straße 38 Dekanat 1. Stock
  • Donnerstag 16.01. 13:00 - 14:30 Seminarraum 2 Währinger Straße 38 Dekanat 1. Stock
  • Donnerstag 23.01. 13:00 - 14:30 Seminarraum 2 Währinger Straße 38 Dekanat 1. Stock
  • Donnerstag 30.01. 13:00 - 14:30 Seminarraum 2 Währinger Straße 38 Dekanat 1. Stock

Information

Ziele, Inhalte und Methode der Lehrveranstaltung

This course aims to illustrate how advanced laserspectroscopy methods like ultrafast and multidimensional spectroscopy with visible and infrared light are used to study molecular systems. We will start with describing the interaction between light and matter and discussing various aspects of line broadening. Subsequently, you will be introduced to the principles of lasers and especially mode locked lasers producing laserpulses with a duration of 10s of femtoseconds. This introductory part of the lecture is followed by a theoretical and practical description of multidimensional spectroscopy in which a sequence of laser pulses is used. Recent research examples from literature will be used to illustrate the concepts. These multi-dimensional, ultrafast spectroscopies have great potential by opening increasingly broad experimental windows into the structure and dynamics of molecules on early fs-time-scales. Besides dipole-dipole coupling and energy and population transfer, chemical exchange 2D-IR spectroscopic studies will be discussed.The lecture series offers an overview of both the breadth and depth of current activity in the field and may provide motivation for advancing the frontiers in this era and the interdisciplinary context in the fields of physics, chemical physics and biophysics.

Art der Leistungskontrolle und erlaubte Hilfsmittel

Oral examination

Mindestanforderungen und Beurteilungsmaßstab

Fundamental understanding of the concepts discussed in the lectures.

minimum requirement:
A positive rate requires a solid basic knowledge and understanding of the lecture content.

evaluation standards:
sehr gut - excellent performance, is able to reproduce (nearly) the entire content of the lecture, shows good understanding of the content and its context
gut - good knowledge of the lecture content with a little shakiness, basic understanding of content and context
befriedigend - middle-rate performance
genügend - clear deficits, but able to reproduce main contents of the lecture with support
nicht-genügend: inacceptable lack of knowledge on the lecture content

Prüfungsstoff

Lecture notes

Literatur

Optional literature
Laser spectroscopy I Basic Principles, W. Demtröder, Springer
Concepts and Methods of 2D Infrared Spectroscopy, P. Hamm and M. Zanni, Cambridge
Principles of Nonlinear Spectroscopy, S. Mukamel, Oxford University Press
Basics of Laser Physics, K.F. Renk, Springer

Zuordnung im Vorlesungsverzeichnis

CH-TPA-02

Letzte Änderung: Mo 14.10.2024 18:26