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Current semester: SoSe 2026

Lecture: Introduction to Plasma Physics (A1)

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Information

Basic Information

Number: 5701201
Term: WiSe 2025/26
Hours per week in term: 2
Language: Englisch
Registered period:

Dates/Times/Location

Group: - iCalendar export for Outlook
  Day Time Frequency Duration Room Room-
plan
Lecturer Remarks Cancelled on Max. participants
iCalendar export for Outlook Fr. 14:00 bis 15:30 weekly 17.10.2025 bis
30.01.2026
Felix-Hausdorff-Straße 6 - Grosser Seminarraum Physik      
Single Terms
17.10.2025 | 24.10.2025 | 31.10.2025 | 07.11.2025 | 14.11.2025 | 21.11.2025 | 28.11.2025 | 05.12.2025 | 12.12.2025 | 19.12.2025 | 02.01.2026 | 09.01.2026 | 16.01.2026 | 23.01.2026 | 30.01.2026 |

There are already 5 registrations / 5 of which admission granted

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Contents

Description

This course discusses the basics of high and low temperature plasma physics. The course begins with the definition and occurrences of plasma and discusses the motion of single charged particles in simple and complex magnetic and electric fields. Collisions and stochastic processes are discussed, the plasma fluid equations and the magneto-hydrodynamic equations are derived and used to describe transport processes in plasmas. The role of boundaries in plasmas is considered and an introduction to plasma waves and oscillations is given. Finally, we introduce the kinetic description of a plasma and give a survey of the most important plasma discharges.

 

Literature

F. F. Chen, Introduction to Plasma Physics and Controlled Fusion, Plenum (New York) 1988

R. J. Goldston and P. H. Rutherford, Introduction to Plasma Physics, IOP Publishing (Bristol) 1995

U. Stroth, Plasmaphysik, Vieweg/Teubner (Wiesbaden) 2011; A. Piel, Plasma Physics, Springer (Heidelberg) 2010

 

Prerequisites

B. Sc. Physik./B. Sc. Physics

Certificates

mdl. Prüfung im Rahmen der Modulprüfung/oral examination as part of the module examination

- 3 LP

Learning Content

This course teaches the basics of high and low temperature plasma physics. The course begins with the definition and occurrences of plasma and discusses the motion of single charged particles in simple and complex magnetic and electric fields. Collisions and stochastic processes are discussed, the plasma fluid equations and the magneto-hydrodynamic equations are derived and used to describe transport processes in plasmas. The role of boundaries in plasmas is considered and an introduction to plasma waves and oscillations is given. Finally, we introduce the kinetic description of a plasma and give a survey of the most important plasma discharges.

Target Group

M. Sc. Physik./M. Sc. Physics

M.Sc. Medizinphysik/M. Sc. Medical Physics

Moodle https://moodle.uni-greifswald.de/course/view.php?id=7399

Responsible Instructor

Responsible Instructor Responsibilities
Klinger, Thomas, Prof., Dr. rer. nat. verantwortlich

Curriculae

Graduation Curricula Phase Examination regulations version
Master of Science Medizinphysik MSc 1. Semester 2021
Master of Science Medizinphysik 1. Semester 2024
Master of Science Physik MSc 1. Semester 2020

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