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  4. B04 – Opto-mechanical lasing mechanisms in cold atoms

B04 – Opto-mechanical lasing mechanisms in cold atoms

In page navigation: Research
  • Area A: Quantum cooperativity induced by measurement processes
  • Area B: Quantum cooperativity of collective degrees of freedom
    • B01 - Collective quantum dynamics of structural- and spin-defects in ion crystals
    • B02 - Levitated ferrimagnetic particles in hollow-core photonic crystal fibres
    • B03 - Point defects in silicon carbide: Towards a platform for the coupling of light, spin and mechanics
    • B04 - Opto-mechanical lasing mechanisms in cold atoms
    • B05 - Optomagnomechanical Arrays
  • Area C: Quantum cooperativity induced by interactions
  • Area D: Pushing the limits of quantum cooperativity
  • Service projects
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B04 – Opto-mechanical lasing mechanisms in cold atoms

Summary

We will study the mechanical dynamics of cold ytterbium atoms inside a high-finesse optical resonator and the concomitant steady-state and transient characteristics of the light emission from the resonator. The project will bring together the physics of cold-atom lasing with the physics of collective opto-mechanical atom-mode interaction. We will investigate spatial self-organization of the atoms and ways to control it, with respect to the conditions under which continuous lasing may be realized. As a more long-term perspective, we aim at demonstrating laser action in combination with self-ordering and/or cooling of the atoms, a collective process with several intrinsic non-linearities and feedback loops, expected to display a rich spectrum of phenomena.

Project Leaders

Jürgen Eschner

Jürgen Eschner

Project leader B04

Universität des Saarlandes

Campus E2.6
66123 Saarbrücken
  • Phone number: +4968130258016
  • Email: juergen.eschner@physik.uni-saarland.de
More › Details for Jürgen Eschner

Publications

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Friedrich-Alexander-Universität Erlangen-Nürnberg
Johannes Gutenberg-Universität Mainz

Universität des Saarlandes Saarbrücken

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