activity
20152022
most citedSingle-particle Mie-resonant all-dielectric nanolasers

8 citations · 14 across the 6 of their papers we have counts for

collaborators

22 papers

physics.optics20222 cited

Nanostructured transition metal dichalcogenide multilayers for advanced nanophotonics

Battulga Munkhbat, Betül Küçüköz, Denis G. Baranov +2

Transition metal dichalcogenides (TMDs) attract significant attention due to their exceptional optical, excitonic, mechanical, and electronic properties. Nanostructured multilayer…

physics.optics20214 cited

Non-Planck thermal emission from two-level media

Igor A Nechepurenko, Denis G Baranov

Thermal emission is a universal phenomenon of stochastic electromagnetic emission from an object composed of arbitrary materials at elevated temperatures. A defining feature of thi…

physics.optics2020

Microscopic Metavehicles Powered and Steered by Embedded Optical Metasurfaces

Daniel Andrén, Denis G. Baranov, Steven Jones +3

Nanostructured dielectric metasurfaces offer unprecedented opportunities to manipulate light by imprinting an arbitrary phase-gradient on an impinging wavefront. This has resulted…

physics.optics2020

Casimir microcavities for tunable self-assembled polaritons

Battulga Munkhbat, Adriana Canales, Betul Kucukoz +2

Hybrid light-matter states, polaritons, are one of the central concepts in modern quantum optics and condensed matter physics. Polaritons emerge as a result of strong interaction b…

physics.optics2020

Abundance of cavity-free polaritonic states in resonant materials and nanostructures

Adriana Canales, Denis G. Baranov, Tomasz J. Antosiewicz +1

Strong coupling between various kinds of material excitations and optical modes has recently shown potential to modify chemical reaction rates in both excited and ground states. Th…

physics.optics2020

Enhancing vibrational light-matter coupling strength beyond the molecular concentration limit using plasmonic arrays

Manuel Hertzog, Battulga Munkhbat, Denis G. Baranov +2

Vibrational strong coupling is emerging as a promising tool to modify molecular properties, by making use of hybrid light-matter states known as polaritons. Fabry-Perot cavities fi…