Oleksiy Roslyak, Ph.D.

Affiliations: 
2007 Physics City University of New York, New York, NY, United States 
Area:
Condensed Matter Physics
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Parents

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Joseph L. Birman grad student 2007 CUNY
 (Hybrid quadrupole excitons and polaritons in cuprous oxide.)
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Publications

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Sukharev M, Roslyak O, Piryatinski A. (2021) Second-harmonic generation in nonlinear plasmonic lattices enhanced by quantum emitter gain medium. The Journal of Chemical Physics. 154: 084703
Simpson JR, Roslyak O, Duque JG, et al. (2018) Resonance Raman signature of intertube excitons in compositionally-defined carbon nanotube bundles. Nature Communications. 9: 637
Roslyak O, Piryatinski A. (2016) Effect of periodic potential on exciton states in semiconductor carbon nanotubes Chemical Physics
Karan NS, Keller AM, Sampat S, et al. (2015) Plasmonic giant quantum dots: hybrid nanostructures for truly simultaneous optical imaging, photothermal effect and thermometry. Chemical Science. 6: 2224-false
Karan NS, Keller AM, Sampat S, et al. (2015) Plasmonic giant quantum dots: Hybrid nanostructures for truly simultaneous optical imaging, photothermal effect and thermometry Chemical Science. 6: 2224-2236
Gao Y, Roslyak O, Dervishi E, et al. (2015) Hybrid Graphene-Giant Nanocrystal Quantum Dot Assemblies with Highly Efficient Biexciton Emission Advanced Optical Materials. 3: 39-43
Ma X, Roslyak O, Wang F, et al. (2014) Influence of exciton dimensionality on spectral diffusion of single-walled carbon nanotubes. Acs Nano. 8: 10613-20
Roslyak O, Cherqui C, Dunlap DH, et al. (2014) Effect of localized surface-plasmon mode on exciton transport and radiation emission in carbon nanotubes. The Journal of Physical Chemistry. B. 118: 8070-80
Iurov A, Gumbs G, Roslyak O, et al. (2013) Photon dressed electronic states in topological insulators: tunneling and conductance. Journal of Physics. Condensed Matter : An Institute of Physics Journal. 25: 135502
Huang D, Gumbs G, Roslyak O. (2013) Effects of nonlocal plasmons in gapped graphene micro-ribbon array and two-dimensional electron gas on near-field electromagnetic response in the deep subwavelength regime. Applied Optics. 52: 755-69
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