TOPICAL STUDENTS TALKS

SS 2010 FKTII

Steffen Backes:
  • Non-Abelian States of Matter
  • Steffen Backes:
  • Projected augmented-wave Method
  • Andreas Werner:
  • Spin liquids in frustrated magnets
  • Andreas Werner:
  • The Mermin-Wagner Theorem
  • Alisa Lier:
  • Quantum Computers
  • Alisa Lier:
  • Antiferromagnetism
  • Michael Adler:
  • Multiferroics
  • Michael Adler:
  • Quantum Hall Effect
  • Jens Schalkowski:
  • Iron Superconductors
  • Jens Schalkowski:
  • Kondo Model
  • WS 2010/11 FKTI

    Elena Gati / Michael Peter:
  • Polarons
  • Paul Weirich / Him Hoang:
  • Spinons and Holons
  • Johannes Hofmann / Daniel Hess :
  • Magnons
  • Kai Ackermann / Jean Diehl :
  • Excitons
  • Joscha Reichert:
  • Density Functional Theory
  • SS 2011 FKTII

    Michaela Altmeyer:
  • Quantum Criticality
  • Kira Riedl:
  • Quasicrystals
  • Robert Rueger:
  • Quantum metropolis algorithm
  • Jean Diehl:
  • Metamaterials
  • Hieu Hoang:
  • Kondo effect
  • WS 2011/12 FKTI

    Lars Postulka / Sebastian Becker:
  • Scanning tunneling microscopy
  • Simon Streib:
  • Goldstone Theorem
  • Wiebke Ritter:
  • Nuclear magnetic resonance
  • Kristin Kliemt / Carsten Neumann:
  • Graphene - An introduction
  • Jan Krieg / Steffi Hartmann:
  • de Haas van Alphen effect
  • Jan-Peter Baecker / Martin Lonsky:
  • Photoemission experiments
  • Matthias Holzhauer/Thomas Felix/Peter Fritzsche:
  • Raman spectroscopy
  • Peter Gruszka/Lukas Keller:
  • Neutron diffraction
  • SS 2014 QMII

    Martin Schmidt/Lukas Plogmacher:
  • Graphene and Dirac fermions
  • Fabian Schubert:
  • Hidden Variables
  • Marc Hanefeld/Matthias Wiecha:
  • Quantum teleportation
  • SS 2016 FKTII

    Lucas Habeney:
  • Quantum Criticality
  • Stefan Hartmann:
  • Solar Cells
  • David Kaib:
  • Quasicrystals
  • Ruediger Kraemer:
  • Higgs
  • Benjamin Nasir:
  • Non-abelian topological states
  • Aleksandar Razpopov:
  • Quantum Computing