Vorlesung: 5.04.4663 Physics with Ultrashort Pulses and Intense Light - Details

Vorlesung: 5.04.4663 Physics with Ultrashort Pulses and Intense Light - Details

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Veranstaltungsname Vorlesung: 5.04.4663 Physics with Ultrashort Pulses and Intense Light
Untertitel
Veranstaltungsnummer 5.04.4663
Semester SoSe2019
Aktuelle Anzahl der Teilnehmenden 1
erwartete Teilnehmendenanzahl 15
Heimat-Einrichtung Institut für Physik
Veranstaltungstyp Vorlesung in der Kategorie Lehre
Erster Termin Freitag, 05.04.2019 11:00 - 15:00
Art/Form
Voraussetzungen Basics in optics and laser physics, in particular, Fundamentals of Optics and Photonics; Atomic Physics, Electrodynamics
Lernorganisation Lecture: 2 hrs/week
Laboratory: 2 hrs/week
Leistungsnachweis experimental work and laboratory reports or max. 2hr written examination or max 1h oral examination or presentation or homework
Lehrsprache englisch
ECTS-Punkte 6

Räume und Zeiten

(HS Emden)
Freitag: 11:00 - 15:00, wöchentlich (12x)
Keine Raumangabe
Freitag: 11:00 - 15:00, wöchentlich

Kommentar/Beschreibung

Additionally to the lecture (2 SWS, Friday 12-14, extra time from 14-16 has been arranged because the lecturer is off for two weeks ) lab work will be arranged at HS Emden.

The students acquire broad experimental knowledge of the application of intense light from femtosecond and high power laser systems. They should be acquainted with the interaction of intense light with matter in general and with respect to important scientific and technical applications (in industry) such as laser material processing, high field physics (i.e. laser matter interaction at high intensity), laser generated particle and radiation sources of ultrashort duration and/or ultrashort wavelength etc.

Content:
Femtosecond and high power laser systems and its application, absorption of intense laser light, basics of laser matter interaction at high intensity, diagnostics, applications in micro machining, laser generated ultrashort radiation such as high-order laser harmonics and femtosecond K-alpha-sources and keV and MeV electron and ion sources and their application to micro fabrication micro and nano analysis.; atto physics, strong field physics

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