Search Results - "Levitskii, Iaroslav V."

  • Showing 1 - 6 results of 6
Refine Results
  1. 1
  2. 2

    Weak and strong coupling of photons and excitons in planar meso-cavities by Belonovski, Alexey V, Levitskii, Iaroslav V, Morozov, Konstantin M, Pozina, Galia, Kaliteevski, Mikhail A

    Published in Optics express (27-04-2020)
    “…The interaction of an exciton and cavity modes is considered in planar meso-cavities, which have lateral sizes corresponding to few wavelengths. In…”
    Get full text
    Journal Article
  3. 3

    Emission Properties of GaN Planar Hexagonal Microcavities by Pozina, Galia, Hemmingsson, Carl, Belonovskii, Alexei V., Levitskii, Iaroslav V., Mitrofanov, Maxim I., Girshova, Elizaveta I., Ivanov, Konstantin A., Rodin, Sergey N., Morozov, Konstantin M., Evtikhiev, Vadim P., Kaliteevski, Mikhail A.

    “…Fabrication of microcavities based on III‐nitrides is challenging due to difficulties with the coherent growth of heterostructures having a large number of…”
    Get full text
    Journal Article
  4. 4

    Optical Cavity Based on GaN Planar Nanowires Grown by Selective Area Metal‐Organic Vapor Phase Epitaxy by Pozina, Galia, Ivanov, Konstantin A., Mitrofanov, Maxim I., Kaliteevski, Mikhail A., Morozov, Konstantin M., Levitskii, Iaroslav V., Voznyuk, Gleb V., Evtikhiev, Vadim P., Rodin, Sergey N.

    Published in Physica status solidi. B, Basic research (01-06-2019)
    “…GaN planar nanowires (NWs) are fabricated by selective area metal‐organic vapor phase epitaxy using focused ion beam etching of trench pattern in the Si3N4…”
    Get full text
    Journal Article
  5. 5

    Emission Properties of GaN Planar Hexagonal Microcavities by Pozina, Galia, Hemmingsson, Carl, Belonovskii, Alexei V., Levitskii, Iaroslav V., Mitrofanov, Maxim I., Girshova, Elizaveta I., Ivanov, Konstantin A., Rodin, Sergey N., Morozov, Konstantin M., Evtikhiev, Vadim P., Kaliteevski, Mikhail A.

    “…Planar Hexagonal Microcavities GaN planar hexagonal microcavities are fabricated using a selective area metal‐organic vapor phase epitaxy. The almost ideal…”
    Get full text
    Journal Article
  6. 6