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Showing 1–7 of 7 results
Advanced filters: Author: M. Kaniber Clear advanced filters
  • Mechanisms of distinct resonance in microcavities driven by strongly detuned single quantum dots are not well understood. Investigation of non-resonant dot–cavity coupling of individual quantum dots in micropillars now suggests a dominant role of phonon-mediated dephasing. This new perspective may have implications for single-photon sources, quantum information applications and spectroscopy.

    • S. Ates
    • S. M. Ulrich
    • P. Michler
    Research
    Nature Photonics
    Volume: 3, P: 724-728
  • The photocurrent generated by a single photosynthetic protein can be measured using a scanning near-field optical probe that functions as both an electrode and a light source.

    • Daniel Gerster
    • Joachim Reichert
    • Itai Carmeli
    Research
    Nature Nanotechnology
    Volume: 7, P: 673-676
  • Light emitters can be induced in transition metal dichalcogenides by defect engineering, but challenges remain in their controlled spatial positioning. Here, the authors irradiate monolayer MoS2 with a sub-nm focused helium ion beam to deterministically create defects, and obtain spectrally narrow emission lines that produce photons in the visible spectral range

    • J. Klein
    • M. Lorke
    • A. W. Holleitner
    ResearchOpen Access
    Nature Communications
    Volume: 10, P: 1-8
  • A cavity quantum electrodynamics system comprising a quantum emitter and an optical cavity is theoretically investigated. The outcoupling process for the N-photon state of the cavity is simulated. The numerical calculations predict the possibility of operating this system as a source of N-photon bundles with a tunable integer N.

    • C. Sánchez Muñoz
    • E. del Valle
    • F. P. Laussy
    Research
    Nature Photonics
    Volume: 8, P: 550-555