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Carl von Ossietzky Universität Oldenburg. Institute of Physics

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Condensed Matter Theory
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    • High-order perturbation theory
    • Bose-Einstein condensation
    • Cooling of nanoparticles
    • Nanoscale thermal imaging
    • Heat radiation of artificial materials
    • History corner
      • Quantum Floquet theory
      • Mesoscopic entanglement
      • Nano-electro-mechanics
    • Quo vadis BEC?
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Sie sind hier: Uni. Fak.. Fk. V. Physik. Cond.Mat.. Research

Condensed Matter Theory

  
 

Research topics

High-order perturbation theory for strongly correlated Boson systems

Dennis Hinrichs, Axel Pelster, Martin Holthaus
process chain diagrams

Bose-Einstein condensates: Coherent control by time-periodic forcing

Stephan Arlinghaus, Bettina Gertjerenken,
Matthias Langemeyer, Martin Holthaus
Controlled superfluid-insulator transition

Cooling of nanoparticles

Svend-Age Biehs, Maria Tschikin, Martin Holthaus
Heat flux 'through' a third particle

Nanoscale thermal imaging

Svend-Age Biehs, Maria Tschikin, Martin Holthaus
Near-field heat transfer: electromagnetic local density of states vs. thermovoltage data

Heat radiation of artificial materials

Svend-Age Biehs, Maria Tschikin
transmission coefficient for porous media

History corner

Milestones of quantum Floquet theory


Martin Holthaus

Mesoscopic entanglement


Christoph Weiss

Nano-electro-mechanics


Christoph Weiss
Separatrix Floquet state

Quo vadis BEC?

Axel Pelster, Martin Holthaus
Quo vadis BEC?

Disclaimer Druckversion Svend-Age Biehs Last modified: Dec 29 2011


 

Help. Search. Imprint. Style. Recommend. Print Version. Stefan Krautwald . Changed: 24.10.2006

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