activity
20172019
most citedSingle-particle Mie-resonant all-dielectric nanolasers

8 citations · 14 across the 2 of their papers we have counts for

collaborators

7 papers

physics.optics2019

Ultrastrong coupling between nanoparticle plasmons and cavity photons at ambient conditions

Denis G. Baranov, Battulga Munkhbat, Elena Zhukova +6

Ultrastrong coupling is a distinct regime of electromagnetic interaction that enables a rich variety of intriguing physical phenomena. Traditionally, this regime has been reached b…

physics.optics2019

Circular dichroism mode splitting and bounds to its enhancement with cavity-plasmon-polaritons

Denis G. Baranov, Battulga Munkhbat, Nils Odebo Länk +3

The ability to differentiate chiral molecules of different handedness is of great importance for chemical and life sciences. Since most of the relevant chiral molecules have their…

physics.optics20198 cited

Single-particle Mie-resonant all-dielectric nanolasers

Ekaterina Yu. Tiguntseva, Kirill L. Koshelev, Aleksandra D. Furasova +7

All-dielectric subwavelength structures utilizing Mie resonances provide a novel paradigm in nanophotonics for controlling and manipulating light. So far, only spontaneous emission…

physics.optics2019

Visualizing plasmon-exciton polaritons at the nanoscale using electron microscopy

Andrew B. Yankovich, Battulga Munkhbat, Denis G. Baranov +7

Polaritons are compositional light-matter quasiparticles that have recently enabled remarkable breakthroughs in quantum and nonlinear optics, as well as in material science. Despit…

cond-mat.mes-hall2019

Strong plasmon-molecule coupling at the nanoscale revealed by first-principles modeling

Tuomas P. Rossi, Timur Shegai, Paul Erhart +1

Strong light-matter interactions in both the single-emitter and collective strong coupling regimes attract significant attention due to emerging quantum and nonlinear optics applic…

physics.optics2018

Transition metal dichalcogenide nanodisks as high-index dielectric Mie nanoresonators

Ruggero Verre, Denis G. Baranov, Battulga Munkhbat +3

Monolayer transition metal dichalcogenides (TMDCs) have recently been proposed as a unique excitonic platform for advanced optical and electronic functionalities. However, in spite…