Quantum Acoustooptics of Hybrid Nanosystems

NCN Maestro, 2024-2028, Grant No. 2023/50/A/ST3/00511

We will study the properties of solid-state quantum emitters interacting simultaneously with light and lattice vibrations (sound). Our goal is to develop methods for transducing quantum information between acoustic and optical (or microwave) degrees of freedom using quantum dots and defect centers in solids.

Latest news from the project

  • Acousto-optic double dressing of exciton transition

    Our double-dressing paper has been published

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  • PhD scholarship available!

    A scholarship available for a PhD student in Quantum Acousto-optics. The scholarship is available to current students od the Doctoral School See the official announcement for detailed requirements and procedures.

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  • Post-doc position available

    A post-doc position is available for 2 years from 1st February 2026 in the project Quantum Acoustooptics of Hybrid Nanosystems.Deadline for applications: 24th October. See the announcement for details.

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  • PhD positions available

    2 positions available for 4 years from 1st October in the project Quantum Acoustooptics of Hybrid Nanosystems. Deadline for applications: 19th May. Scholarships available:Doctoral School scholarship: PLN 4400 gross (approx. PLN 3900 net) for the 1st and 2nd years, PLN 5490 gross (approx. PLN 4870 net) for the 3rd and 4th years.Additional project scholarship: PLN…

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  • Our paper on noise effects on acoustic control is available

    Precision of the acoustic control of single-photon scattering with semiconductor quantum dots Rafał A. Bogaczewicz and Paweł Machnikowski Optics Letters 50, 888 (2025) Acoustic modulation of quantum dots (QDs) allows one to control the scattering of photons. We formulate the theory of low-intensity resonance fluorescence (RF) in the presence of noise and show that a…

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  • Launching the Maestro project

    Our project Quantum Acoustooptics of Hybrid Nanosystems (NCN Maestro, 2024-2028, Grant No. 2023/50/A/ST3/00511) was started on 10th July 2024. We will study the properties of solid-state quantum emitters interacting simultaneously with light and lattice vibrations (sound). Our goal is to develop methods for transducing quantum information between acoustic and optical (or microwave) degrees of freedom…

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