Folgen
Andrey Vyshnevyy
Andrey Vyshnevyy
senior researcher, Emerging Technologies Research Center, XPANCEO, UAE
Bestätigte E-Mail-Adresse bei mipt.ru - Startseite
Titel
Zitiert von
Zitiert von
Jahr
Broadband optical properties of monolayer and bulk MoS2
GA Ermolaev, YV Stebunov, AA Vyshnevyy, DE Tatarkin, DI Yakubovsky, ...
npj 2D Materials and Applications 4 (1), 21, 2020
1962020
Topological phase singularities in atomically thin high-refractive-index materials
G Ermolaev, K Voronin, DG Baranov, V Kravets, G Tselikov, Y Stebunov, ...
Nature communications 13 (1), 2049, 2022
832022
Transition metal dichalcogenide nanospheres for high-refractive-index nanophotonics and biomedical theranostics
GI Tselikov, GA Ermolaev, AA Popov, GV Tikhonowski, DA Panova, ...
Proceedings of the National Academy of Sciences 119 (39), e2208830119, 2022
522022
Enhancing the brightness of electrically driven single-photon sources using color centers in silicon carbide
IA Khramtsov, AA Vyshnevyy, DY Fedyanin
npj Quantum Information 4 (1), 15, 2018
502018
Optical constants of chemical vapor deposited graphene for photonic applications
MA El-Sayed, GA Ermolaev, KV Voronin, RI Romanov, GI Tselikov, ...
Nanomaterials 11 (5), 1230, 2021
422021
Lasing threshold of thresholdless and non-thresholdless metal-semiconductor nanolasers
AA Vyshnevyy, DY Fedyanin
Optics express 26 (25), 33473-33483, 2018
332018
Hexagonal boron nitride nanophotonics: a record-breaking material for the ultraviolet and visible spectral ranges
DV Grudinin, GA Ermolaev, DG Baranov, AN Toksumakov, KV Voronin, ...
Materials Horizons 10 (7), 2427-2435, 2023
302023
Broadband Optical Constants and Nonlinear Properties of SnS2 and SnSe2
GA Ermolaev, DI Yakubovsky, MA El-Sayed, MK Tatmyshevskiy, ...
Nanomaterials 12 (1), 141, 2021
252021
van der Waals materials for overcoming fundamental limitations in photonic integrated circuitry
AA Vyshnevyy, GA Ermolaev, DV Grudinin, KV Voronin, I Kharichkin, ...
Nano Letters 23 (17), 8057-8064, 2023
242023
Optical Constants and Structural Properties of Epitaxial MoS2 Monolayers
GA Ermolaev, MA El-Sayed, DI Yakubovsky, KV Voronin, RI Romanov, ...
Nanomaterials 11 (6), 1411, 2021
242021
Broadband Optical Properties of Atomically Thin PtS2 and PtSe2
GA Ermolaev, KV Voronin, MK Tatmyshevskiy, AB Mazitov, AS Slavich, ...
Nanomaterials 11 (12), 3269, 2021
222021
Self-heating and cooling of active plasmonic waveguides
AA Vyshnevyy, DY Fedyanin
ACS Photonics 3 (1), 51-57, 2016
222016
Anomalous optical response of graphene on hexagonal boron nitride substrates
AN Toksumakov, GA Ermolaev, MK Tatmyshevskiy, YA Klishin, ...
Communications Physics 6 (1), 13, 2023
192023
Exploring van der Waals materials with high anisotropy: geometrical and optical approaches
AS Slavich, GA Ermolaev, MK Tatmyshevskiy, AN Toksumakov, ...
Light: Science & Applications 13 (1), 68, 2024
172024
Two-particle entanglement in capacitively coupled Mach-Zehnder interferometers
AA Vyshnevyy, AV Lebedev, GB Lesovik, G Blatter
Physical Review B—Condensed Matter and Materials Physics 87 (16), 165302, 2013
162013
High-refractive index and mechanically cleavable non-van der Waals InGaS3
AN Toksumakov, GA Ermolaev, AS Slavich, NV Doroshina, ...
npj 2D Materials and Applications 6 (1), 85, 2022
152022
Van der Waals materials for subdiffractional light guidance
G Ermolaev, D Grudinin, K Voronin, A Vyshnevyy, A Arsenin, V Volkov
Photonics 9 (10), 744, 2022
122022
Hybrid metal-dielectric-metal sandwiches for SERS applications
MK Tatmyshevskiy, DI Yakubovsky, OO Kapitanova, VR Solovey, ...
Nanomaterials 11 (12), 3205, 2021
112021
Setup of three Mach-Zehnder interferometers for production and observation of Greenberger-Horne-Zeilinger entanglement of electrons
AA Vyshnevyy, GB Lesovik, T Jonckheere, T Martin
Physical Review B—Condensed Matter and Materials Physics 87 (16), 165417, 2013
112013
Wandering principal optical axes in van der Waals triclinic materials
GA Ermolaev, KV Voronin, AN Toksumakov, DV Grudinin, IM Fradkin, ...
Nature communications 15 (1), 1552, 2024
102024
Das System kann den Vorgang jetzt nicht ausführen. Versuchen Sie es später erneut.
Artikel 1–20