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    • Area A: Quantum cooperativity induced by measurement processes
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  4. B01 – Collective quantum dynamics of structural- and spin-defects in ion crystals

B01 – Collective quantum dynamics of structural- and spin-defects in ion crystals

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
  • Publications
  • Spotlights

B01 – Collective quantum dynamics of structural- and spin-defects in ion crystals

Summary

We characterize defect structures in trapped ion crystals in a common experiment and theory approach. For this purpose, the experimental group will setup a versatile ion trap and work with mixed-species linear crystals composed of up to 50 ions using the atomic ions 40Ca+ and 9Be+. The theory will characterize the dynamics of this system for experimentally-relevant configurations. Our aim is to control and tailor the defects’ cooperative properties which are mediated by the vibrations of the embedding crystal. In turn, we aim at controlling the dynamics of this spin boson system using mass-defects and spin-dependent forces.

Project Leaders

Giovanna Morigi

Giovanna Morigi

Project leader B01/D02

Universität des Saarlandes

Campus E2.6
66123 Saarbrücken
  • Phone number: +4968130257472
  • Email: giovanna.morigi@physik.uni-saarland.de
More › Details for Giovanna Morigi
Ferdinand Schmidt-Kaler

Ferdinand Schmidt-Kaler

Project leader A01/B01

Johannes Gutenberg-Universität Mainz

Staudingerweg 7
55128 Mainz
  • Phone number: +4961313926234
  • Email: fsk@uni-mainz.de
More › Details for Ferdinand Schmidt-Kaler

Publications

2023

  • Niederländer M., Vogel J., Schulze-Makuch A., Gély B., Mokhberi A., Schmidt-Kaler F.:
    Rydberg ions in coherent motional states: a new method for determining the polarizability of Rydberg ions
    In: New Journal of Physics 25 (2023), p. 033020
    ISSN: 1367-2630
    DOI: 10.1088/1367-2630/acbf06

2022

  • Gajewski M., Li W., Wolf S., Hahn W., Duellmann CE., Budker D., Morigi G., Schmidt-Kaler F.:
    Fluorescence calorimetry of an ion crystal
    In: Physical Review A 106 (2022), Article No.: 033108
    ISSN: 1050-2947
    DOI: 10.1103/PhysRevA.106.033108
  • Li W., Wolf S., Klein L., Budker D., Duellmann CE., Schmidt-Kaler F.:
    Robust polarization gradient cooling of trapped ions
    In: New Journal of Physics 24 (2022), Article No.: 043028
    ISSN: 1367-2630
    DOI: 10.1088/1367-2630/ac6233

2021

  • Kiethe J., Timm L., Landa H., Kalincev D., Morigi G., Mehlstäubler T.:
    Finite-temperature spectrum at the symmetry-breaking linear to zigzag transition
    In: Physical Review B 103 (2021), Article No.: 104106
    ISSN: 0163-1829
    DOI: 10.1103/PhysRevB.103.104106

 

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

Universität des Saarlandes Saarbrücken

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