WS 2025 SS 2026
WS 2025
WS 2024 SS 2025
Department of Physics
open chemistry
KVL / Klausuren / MAP 1st HS: 13.10  2nd HS: 20.12  sem.br.: 14.02  begin SS: 11.04

4020255027 Neutrino physics and astrophysics      VVZ  

VL weekly Walter Winter
UE 14-day Walter Winter

Präsenzkurs

classroom language
EN
aims
You will learn to understand and apply theoretical foundations, methods, and formalisms of neutrino physics across both particle and astrophysical contexts. The course combines a particle physics–oriented part with an astrophysics–oriented part, preparing you to connect theory with cutting-edge interdisciplinary research and to solve relevant problems in modern astroparticle physics.
requirements
Astroparticle physics (desirable), introduction to the Standard Model (recommended)
structure / topics / contents
Neutrino oscillations
Solar neutrinos, MSW effect
Neutrino masses and mixings
Neutrinos meet the Standard Model
Multi-messenger astroparticle physics
Radiation models for astrophysical sources
Hadronic interactions in astrophysical sources
Baryogenesis/Leptogenesis
assigned modules
P25.1.a
amount, credit points; Exam / major course assessment
3 SWS, 6 SP/ECTS (Arbeitsanteil im Modul für diese Lehrveranstaltung, nicht verbindlich)
Oral examination, participation in tutorials (50% points), reading assignment with short presentation if credit points are needed.
other
The lecture/tutorial/communication will be in English. Contact the lecturer early on if you have specific requirements for the time slots.
contact
Walter Winter, 1'410 (HUB) 2R01 (DESY Zeuthen), E-mail: walter.winter AT physik.hu-berlin.de
literature
Carlo Giunti and Chung Kim. Fundamental of neutrino physics and astrophysics. Oxford
Gaisser, Engel, Resconi. Cosmic rays and particle physics. Cambridge
Malcolm Longair. High-energy astrophysics (vol. I). Cambridge
Moodle link:
http://moodle.hu-berlin.de/course/view.php?id=135398
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