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    • Area A: Quantum cooperativity induced by measurement processes
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  4. C01 – One-dimensional photon-mediated cooperativity of quantum emitters

C01 – One-dimensional photon-mediated cooperativity of quantum emitters

In page navigation: Research
  • Area A: Quantum cooperativity induced by measurement processes
  • Area B: Quantum cooperativity of collective degrees of freedom
  • Area C: Quantum cooperativity induced by interactions
    • C01 - One-dimensional photon-mediated cooperativity of quantum emitters
    • C02 - Light-induced correlations in dense atomic media
    • C03 - Mechanical and chemical control of single and multiphoton emission
    • C04 - X-ray Photonic Structures for Control of Cooperative Emission from Resonant Nuclei
    • C05 - Quantum cooperative helical metafilms for producing nonclassical light
  • Area D: Pushing the limits of quantum cooperativity
  • Service projects
  • Publications
  • Spotlights

C01 – One-dimensional photon-mediated cooperativity of quantum emitters

Summary

We aim to realize a cooperative solid-state platform, where a controlled number of quantum emitters are coupled to a single mode of a one-dimensional subwavelength waveguide (nanoguide). This novel coupling mechanism yields a particular form of “polaritonic” quantum cooperative behavior, i.e., a series of rich superposition states of light and matter, whereby delocalized and localized effects can be observed, depending on the emitter spacings and density. Our long-term vision is to realize and explore novel quantum states of light and matter which are mediated by long-range photonic interaction and do not exist in nature.

Project Leaders

Vahid Sandoghdar

Vahid Sandoghdar

Project leader C01

Max Planck Institut für die Physik des Lichts

Staudtstrasse 2
91058 Erlangen
  • Phone number: +49 9131 7133300
  • Email: vahid.sandoghdar@mpl.mpg.de
More › Details for Vahid Sandoghdar

Publications

2023

  • Musavinezhad M., Shkarin A., Rattenbacher D., Renger J., Utikal T., Götzinger S., Sandoghdar V.:
    Quantum Efficiency of Single Dibenzoterrylene Molecules in p-Dichlorobenzene at Cryogenic Temperatures
    In: Journal of Physical Chemistry B 127 (2023), p. 5353-5359
    ISSN: 1520-6106
    DOI: 10.1021/acs.jpcb.3c01755

 

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

Universität des Saarlandes Saarbrücken

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