Universität Wien

260129 VO Astro Particle Physics (2012W)

2.50 ECTS (2.00 SWS), SPL 26 - Physik

Blocked lecture during winter semester, in English
contact: manfred.jeitler@cern.ch

Institute of High Energy Physics, Nikolsdorfergasse 18, 1050 Vienna
(First floor, library).

Vorbesprechung: DO 18.10.2012 10.30-11.00 Ort: Kurt-Gödel-Hörsaal, Strudlhofgasse 4, EG, 1090 Wien.

Fri 09:00 - 17:30 16.11.2012 Institute of High Energy Physics, Nikolsdorferg. 18, 1050 Vienna, 1st floor, library block 1

Sat 09:00 - 17:30 17.11.2012 Institute of High Energy Physics, Nikolsdorferg. 18, 1050 Vienna, 1st floor, library block 2

Fri 09:00 - 17:30 30.11.2012 Institute of High Energy Physics, Nikolsdorferg. 18, 1050 Vienna, 1st floor, library block 3

Sat 09:00 - 17:30 01.12.2012 Institute of High Energy Physics, Nikolsdorferg. 18, 1050 Vienna, 1st floor, library block 4

Details

Language: English

Examination dates

Lecturers

Classes

Currently no class schedule is known.

Information

Aims, contents and method of the course

Signals from outer space: discovery; the birth of high-energy physics; composition and spectra of cosmic radiation; overlap with conventional astronomy; primary and secondary cosmic rays; charged particles; photons; neutrinos; gravitational waves; hypothetical particles ("dark matter"); importance and possible dangers for man on earth and in outer space (influence on the weather, exposure to cosmic rays on earth and on board of airplanes and space ships; ozone hole); interdisciplinary aspects (joint research with environmental physics, meteorology, oceanography and limnology)

Measurement methods of astro-particle physics:
Installations on the surface of the earth, on balloons and in outer space; the earth's atmosphere serving as detector for particles; neutrino detectors in the MeV to EeV range; detectors for "dark matter"; large terrestrial installations (in the 10000 square-kilometer range on the earth's surface, as well as installations under water and in the ice of Antarctica); radio emission of highest-energy particles; installations on satellites and in space stations

Physics aims of astro-particle physics:
Tests of the Standard Model beyond energies that can be reached by accelerators; neutrino oscillations, measurements of properties and mass of neutrinos; search for particles which have not been discovered so far ("dark matter", supersymmetry etc.); CP-violation and antimatter; cosmology, relics of the Big Bang, the origin of the world

Assessment and permitted materials

Oral exam

Minimum requirements and assessment criteria

Introduction into a new, fascinating field of physics: physics from and with cosmic particle accelerators

Examination topics

Interactive teaching where students can and should provide feedback and ask questions at any moment.

Reading list


Association in the course directory

MF 8, MaG 21

Last modified: We 19.08.2020 08:06