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  3. Area D: Pushing the limits of quantum cooperativity
  4. D01 – Cooperative effects in coupled quantum emitter systems

D01 – Cooperative effects in coupled quantum emitter systems

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
  • Area D: Pushing the limits of quantum cooperativity
    • D01 - Cooperative effects in coupled quantum emitter systems
    • D02 - Spatio-temporal structures in interacting spin systems
    • D03 - Competing interactions in strongly correlated light-matter assemblies
    • D04 - Synchronising quantum spins with long-range dissipation
    • D05 - Quantum Cooperativity and Synchronization
    • D06 - Entangling collective behavior of quantum materials and quantum light
  • Service projects
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D01 – Cooperative effects in coupled quantum emitter systems

Summary

Cooperative quantum behavior occurs naturally in dense ensembles of quantum emitters, where strong particle-particle interactions, such as near field dipole-dipole exchanges can compete with the collective coupling to confined bosonic optical modes. We develop theoretical methods, based on master equations and quantum Langevin equations, applicable to systems ranging from pure quantum emitters subject to disorder and decoherence to molecular ensembles where coupling of electrons to vibrons and phonons pose important challenges. Among others, we aim at specific applications in quantum information, quantum metrology and vacuum-modified material properties such as exciton, energy or charge transport.

Project Leaders

Claudiu Genes

Claudiu Genes

Project leader D01

Max Planck Institut für die Physik des Lichts

Staudtstrasse 2
91058 Erlangen
  • Phone number: +49 9131 7133622
  • Email: claudiu.genes@mpl.mpg.de
More › Details for Claudiu Genes

Publications

2023

  • Baßler N., Reitz M., Schmidt KP., Genes C.:
    Linear optical elements based on cooperative subwavelength emitter arrays
    In: Optics Express 31 (2023), p. 6003-6026
    ISSN: 1094-4087
    DOI: 10.1364/OE.476830
  • Ghosh A., Kumar P., Sommer C., Jimenez FG., Sudhir V., Genes C.:
    Theory of phase-adaptive parametric cooling
    In: Physical Review A 107 (2023), Article No.: 053521
    ISSN: 1050-2947
    DOI: 10.1103/PhysRevA.107.053521
  • Rohn J., Schmidt KP., Genes C.:
    Classical phase synchronization in dissipative non-Hermitian coupled systems
    In: Physical Review A 108 (2023), Article No.: 023721
    ISSN: 1050-2947
    DOI: 10.1103/PhysRevA.108.023721

2022

  • Reitz M., Sommer C., Genes C.:
    Cooperative Quantum Phenomena in Light-Matter Platforms
    In: PRX Quantum 3 (2022)
    ISSN: 2691-3399
    DOI: 10.1103/PRXQuantum.3.010201

2021

  • Gohsrich J., Shah T., Aiello A.:
    Perturbation theory of nearly spherical dielectric optical resonators
    In: Physical Review A 104 (2021)
    ISSN: 1050-2947
    DOI: 10.1103/PhysRevA.104.023516
  • Sommer C., Reitz M., Mineo F., Genes C.:
    Molecular polaritonics in dense mesoscopic disordered ensembles
    In: Physical Review Research 3 (2021)
    ISSN: 2643-1564
    DOI: 10.1103/PhysRevResearch.3.033141

 

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

Universität des Saarlandes Saarbrücken

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