Inhalt

[ 461GACTCP2U23 ] UE (*)Computational Physics II

Versionsauswahl
(*) Leider ist diese Information in Deutsch nicht verfügbar.
Workload Ausbildungslevel Studienfachbereich VerantwortlicheR Semesterstunden Anbietende Uni
1,5 ECTS M2 - Master 2. Jahr Physik Robert E. Zillich 1 SSt Johannes Kepler Universität Linz
Detailinformationen
Quellcurriculum Masterstudium Physics 2025W
Lernergebnisse
Kompetenzen
(*)Upon successful completion of the course, students are able to demonstrate a comprehensive understanding of simulation methods in physics (listed below), and can apply these methods. They are able to write computer programs to solve many-body problems from classical and, optionally, quantum physics.

This exercise is building on topics introduced in the lecture and exercise Computational Physics I. It is methodologically complemented by the lecture Computational Physics II.

Fertigkeiten Kenntnisse
(*)Upon completing the course, students will possess the following skills. They are able to

  • understand mathematical derivations and formulations of numerical methods required for computer simulations (k2);
  • apply these methods by writing computer code (k3);
  • assess the correctness of simulation results obtained with their code, and identify possible errors in their implementation or choice of method (k4/k5);
  • analyze and quantify the accuracy of numerical results (k4/k5);
  • determine the best choice of algorithms for advanced numerical problems in many-body simulations (k5).
(*)During the course, students will acquire knowledge about numerical techniques concerning:

  • symplectic integrators for ordinary differential equations;
  • force fields and their efficient calculation;
  • molecular dynamics simulations in different ensembles;
  • diffusion, rare events (optional), autocorrelations and the fluctuation dissipation theorem;
  • Markov processes and the Metropolis algorithm;
  • Monte Carlo simulation methods for classical statistical mechanics in different ensembles;
  • quantum Monte Carlo methods for ground state and finite temperature simulations (optional).
Beurteilungskriterien (*)Evaluation will be based on the number/quality of successfully solved exercises.
Details will be announced at the beginning of the semester.
Lehrmethoden (*)Students solve exercise problems as homework and/or jointly during the exercise class. Discussion of the course topics and solution of exercises.
Abhaltungssprache Englisch
Literatur (*)see lecture class
Lehrinhalte wechselnd? Nein
Frühere Varianten Decken ebenfalls die Anforderungen des Curriculums ab (von - bis)
TPMWTUECOP2: UE Computational Physics II (2010S-2023S)
Präsenzlehrveranstaltung
Teilungsziffer 25
Zuteilungsverfahren Zuteilung nach Vorrangzahl