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Relativistic Particles in Condensed Matter S20
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Description

Description:

Current research in condensed-matter physics is in a significant part concerned with materials where low-energy electronic excitations behave like relativistic elementary particles. These materials thus allow to study intriguing fundamental problems of relativistic quantum mechanics in highly controllable environments on the ``tabletop’’. At the same time, the relativistic behaviour manifests itself in novel transport phenomena, with high potential forfuture applications. 

In this course we will introduce/recapitulate relevant aspects of relativistic quantum mechanics (Dirac and Weyl fermions, coupling to the electromagnetic field) and explore some of the associated peculiarities, such as the Klein paradox and the chiral anomaly. We will then consider simple condensed-matter models of existing materials, with the focus on Weyl semimetals, and explore how and why relativistic particles emerge in matter and what protects them. Afterwards we will study the peculiar consequences and signatures of the relativistic behaviour in materials, especially transport phenomena associated with the chiral anomaly and the charge-conjugation symmetry of relativistic particles, which will bring us to the frontier of current research.

Teaching form:

Live video conferences during lecture and seminar appointments (details to be announced) with live blackboard lecture and discussions.

Exam: Presumably homework assignment, reproduction of a recent publication.

Literature: 
Lecture notes and lit. for further reading will be provided. 
 

Online Access on Blackboard:

Please register for this lecture in Campus-Management. One day after registration, you can access this course via Blackboard, where you will find further information and teachig material. 

 

Basic Course Info

Course No Course Type Hours
20120401 Vorlesung 2
20120402 Übung 1

Time Span 20.04.2020 - 13.07.2020
Instructors
Maxim Breitkreiz
Piet Brouwer

Study Regulation

0352b_MA120 2013, MSc Physik (Mono), 120 LPs

Relativistic Particles in Condensed Matter S20
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Main Events

Day Time Location Details
Monday 12-14 1.4.03 Seminarraum T2 2020-04-20 - 2020-07-13

Accompanying Events

Day Time Location Details
Monday  8-10 1.4.03 Seminarraum T2 Übung 01
Sunday ? - ? Pseudotutorium zur Kapazitätsplanung - potentielle Übungsteilnehmer melden sich bitte hier an!

Relativistic Particles in Condensed Matter S20
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Relativistic Particles in Condensed Matter S20
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