Projects funded by the NCN


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16 projects found matching your search criteria :

  1. Recombination model of highly pumped nitride structures in the presence of waveguide

    Call: OPUS 8 , Panel: ST3

    Principal investigator: Piotr Perlin

    Instytut Wysokich Ciśnień Polskiej Akademii Nauk

  2. Localized and dipolar excitons and their role in light emission from quantum wells of GaN-InGaN-AlGaN with built-in elec...

    Call: OPUS 6 , Panel: ST3

    Principal investigator: prof. Tadeusz Suski

    Instytut Wysokich Ciśnień Polskiej Akademii Nauk

  3. From strained alloys to superlattices - electronic and optical properties of nitride quantum structures

    Call: OPUS 1 , Panel: ST3

    Principal investigator: dr hab. Izabela Anna Gorczyca

    Instytut Wysokich Ciśnień Polskiej Akademii Nauk

  4. Influence of hydrostatic pressure and external electric and magnetic fields on topological insulator state in indium-ric...

    Call: OPUS 4 , Panel: ST3

    Principal investigator: dr hab. Sławomir Paweł Łepkowski

    Instytut Wysokich Ciśnień Polskiej Akademii Nauk

  5. The effect of distribution of internal electric fields on the optical properties of low-dimensional structures of nitrid...

    Call: OPUS 3 , Panel: ST3

    Principal investigator: dr hab. Agata Kamińska

    Instytut Fizyki Polskiej Akademii Nauk

  6. Determination of the physical properties of polar nitrides multiquantum wells (MQWs) Ga-Al-In-N by ab initio modelling

    Call: SONATA 2 , Panel: ST3

    Principal investigator: dr Paweł Strąk

    Instytut Wysokich Ciśnień Polskiej Akademii Nauk

  7. Detectors based on epitaxial boron nitride taking advantage of the state-of-the-art knowledge about stacking of atomic l...

    Call: OPUS 28 , Panel: ST3

    Principal investigator: prof. Krzysztof Piotr Korona

    Uniwersytet Warszawski

  8. Mechanisms of Al, Ga, In diffusion in three-dimensional quantum structures of (AlGaIn)N

    Call: OPUS 24 , Panel: ST5

    Principal investigator: prof. Michał Jerzy Leszczyński

    Instytut Wysokich Ciśnień Polskiej Akademii Nauk

  9. Isotope-enriched epitaxial boron nitride as an innovative platform for quantum technologies based on spin defects

    Call: OPUS 24 , Panel: ST5

    Principal investigator: prof. Andrzej Stefan Wysmołek

    Uniwersytet Warszawski, Wydział Fizyki

  10. Two-dimensional magnetic materials as a local probe of the magnetic properties of hexagonal boron nitride

    Call: PRELUDIUM 20 , Panel: ST3

    Principal investigator: Katarzyna Weronika Ludwiczak

    Uniwersytet Warszawski, Wydział Fizyki

  11. Quantum structures with super broad emission spectrum and increased emission intensity for the new generation of superlu...

    Call: OPUS 21 , Panel: ST7

    Principal investigator: dr Grzegorz Tomasz Staszczak

    Instytut Wysokich Ciśnień Polskiej Akademii Nauk

  12. Nanoporous GaN - a new platform for realization of quantum structures

    Call: SONATA 15 , Panel: ST5

    Principal investigator: dr Marta Łucja Sawicka

    Instytut Wysokich Ciśnień Polskiej Akademii Nauk

  13. Circumvention of piezoelectric fields in III-nitride heterostructures – a way towards solving the green gap problem

    Call: SONATA 15 , Panel: ST3

    Principal investigator: dr Grzegorz Muzioł

    Instytut Wysokich Ciśnień Polskiej Akademii Nauk

  14. Quantum behavior of point defects and their complexes in III-V nitrides for nanophotonics and quantum information proces...

    Call: SONATINA 3 , Panel: ST3

    Principal investigator: dr Kamil Marek Czelej

    Uniwersytet Warszawski, Wydział Fizyki

  15. In situ Characterization of MOVPE Growth Dynamics and of Diffusion Mechanisms in Nitrides and Their Influence on Optoele...

    Call: BEETHOVEN 3 , Panel: ST5

    Principal investigator: prof. Michał Jerzy Leszczyński

    Instytut Wysokich Ciśnień Polskiej Akademii Nauk

  16. New method of fabrication of InGaN/GaN quantum wires

    Call: OPUS 9 , Panel: ST5

    Principal investigator: prof. Michał Jerzy Leszczyński

    Instytut Wysokich Ciśnień Polskiej Akademii Nauk