PD Dr. Nima Moshayedi

Institut für Mathematik
Universität Zürich
Winterthurerstrasse 190
CH-8057 Zürich

E-Mail:
Office: Y27K04

Personal Website


My research is in mathematical physics where I am interested in geometric and algebraic methods of quantum field theory. In particular, my focus lies on topological quantum field theories, local gauge theories, algebraic topology, symplectic geometry and higher structures in quantum field theory.


If you are interested in doing a master thesis or semester thesis with me, you can contact me by email. Here is a list of potential topics for a master thesis and here is a list of potential topics for a semester thesis


Published Books


 

Quantum Field Theory and Functional Integrals: An Introduction to Feynman Path Integrals and the Foundations of Axiomatic Field Theory

Available at Springer Verlag: SpringerBriefs in Physics.


Kontsevich's Deformation Quantization and Quantum Field Theory

Available at Springer Verlag: Lecture Notes in Mathematics

Despite multiple checks, some typos made it to the printed version. Here you can find a list of errata.


Introduction to Probability Theory: A First Course on the Measure-Theoretic Approach

Available at World Scientific: Series on Probability Theory and Its Applications


Lectures & Seminars

Colloquia
Zurich Graduate Colloquium
Di
17.15-18.30
KO2F150
Carlos De la Cruz Mengual, Alessandra Iozzi, Jonathan Lorand, Nima Moshayedi, Nicolas Müller, Johannes Schmitt
 

Lectures
Lineare Algebra für die Naturwissenschaften
Di
10.15-12.00
Do, 10-12 im HS Y03-G-85 mit Übertragung in HS Y24-G-55

Übungen Lineare Algebra Gr. 1 (Englisch)
Do
11.15-12.00
Y34F48

Übungen Lineare Algebra Gr. 10 (Deutsch)
Do
13.00-13.45

Übungen Lineare Algebra Gr. 2 (Deutsch)
Do
11.15-12.00

Übungen Lineare Algebra Gr. 3 (Englisch)
Do
11.15-12.00

Übungen Lineare Algebra Gr. 4 (Englisch)
Do
11.15-12.00

Übungen Lineare Algebra Gr. 5 (Deutsch)
Do
11.15-12.00

Übungen Lineare Algebra Gr. 6 (Englisch)
Do
11.15-12.00
Y25H92

Übungen Lineare Algebra Gr. 7 (Englisch)
Do
11.15-12.00

Übungen Lineare Algebra Gr. 8 (Deutsch)
Do
12.15-13.00

Übungen Lineare Algebra Gr. 9 (Deutsch)
Do
12.15-13.00