Course

Quantum Field Theory (FYS610)

The course gives an introduction to quantum field theory.


Dette er emnebeskrivelsen for studieåret 2025-2026

Fakta

Emnekode

FYS610

Vekting (stp)

10

Semester undervisningsstart

Spring

Undervisningsspråk

English

Antall semestre

1

Vurderingssemester

Spring

Content

NB! This is an elective course and may be cancelled if fewer than 10 students are enrolled by January 20th for the spring semester.

Path-integral formulation of quantum mechanics, quantum fields and particles, Lorentz symmetry, free boson and fermion fields, perturbation theory and Feynman diagrams, scattering amplitudes, gauge invariance, basic aspects of renormalization, spontaneous symmetry breaking and the Higgs mechanism, selected applications.

Learning outcome

After completing the course, the student should:

K: Understand the basic concepts of quantum field theory such as free boson and fermion fields, Feynman diagrams and scattering amplitudes, spontaneous symmetry breaking.

F1: Be able to determine the classical spectrum of simple field theories.

F2: Be able to compute scattering amplitudes for simple scattering processes.

G: Have a rudimentary insight in the role quantum field theory plays in our understanding of nature.

Forkunnskapskrav

Et av følgende alternativer:
Analytical Mechanics and Field Theory (FYS500)
Mathematical Modelling (MAT500)

Anbefalte forkunnskaper

Quantum Mechanics (FYS320), Micro Physics (FYS330), Analytical Mechanics and Field Theory (FYS500), Mathematical Methods 1 (MAT100), Real and Complex Calculus (MAT210), Vector Analysis (MAT300), Mathematical Modelling (MAT500)

Exam

Form of assessment Weight Duration Marks Aid
Written exam 1/1 4 Hours Letter grades None permitted, Specified printed and hand-written means are allowed


Written exam with pen and paper.

Fagperson(er)

Head of Department:

Bjørn Henrik Auestad

Course coordinator:

Tomas Brauner

Method of work

6 hours of lectures and exercises per week.

Åpent for

City and Regional Planning - Master of Science Computer Science - Master of Science Degree Programme Environmental Engineering - Master of Science Degree Programme Industrial Economics - Master of Science Degree Programme Robot Technology and Signal Processing - Master's Degree Programme Structural and Mechanical Engineering - Master of Science Degree Programme Mathematics and Physics - Master of Science Degree Programme Mathematics and Physics - Five Year Integrated Master's Degree Programme Offshore Field Development Technology - Master of Science Degree Programme Industrial Asset Management - Master of Science Degree Programme Marine and Offshore Technology - Master of Science Degree Programme Offshore Technology - Master's Degree Programme Petroleum Geosciences Engineering - Master of Science Degree Programme Petroleum Engineering - Master of Science Degree Programme Master's Degree Programme in Societal Safety, Specialisation in Technical Social Safety Risk Management - Master's Degree Programme (Master i teknologi/siviling.)
Exchange programme at Faculty of Science and Technology

Emneevaluering

There must be an early dialogue between the course supervisor, the student union representative and the students. The purpose is feedback from the students for changes and adjustments in the course for the current semester.In addition, a digital course evaluation must be carried out at least every three years. Its purpose is to gather the students experiences with the course.
The course description is retrieved from FS (Felles studentsystem). Version 1