activity
20172019
most citedTunable Resonance Coupling in Single Si Nanoparticle-Monolayer WS2 Structures

8 citations · 10 across the 4 of their papers we have counts for

collaborators

5 papers

physics.optics20191 cited

Suppressing Material Loss for Functional Nanophotonics Using Bandgap Engineering

Mingsong Wang, Alex Krasnok, Sergey Lepeshov +6

All-dielectric nanoantennas have recently opened exciting opportunities for functional nanophotonics, owing to their strong optical resonances along with low material loss in the n…

physics.optics2019

All-optical reconfigurable chiral meta-molecules

Linhan Lin, Sergey Lepeshov, Alex Krasnok +5

Chirality is a ubiquitous phenomenon in the natural world. Many biomolecules without inversion symmetry such as amino acids and sugars are chiral molecules. Measuring and controlli…

physics.optics20191 cited

Dark-Exciton-Mediated Fano Resonance from a Single Gold Nanostructure Deposited on Monolayer WS2 at Room Temperature

Mingsong Wang, Zilong Wu, Alex Krasnok +8

Strong spatial confinement and highly reduced dielectric screening provide monolayer transition metal dichalcogenides (TMDCs) with strong many-body effects, thereby possessing opti…

physics.optics2018

Intelligent Nanophotonics: Merging Photonics and Artificial Intelligence at the Nanoscale

Kan Yao, Rohit Unni, Yuebing Zheng

Nanophotonics has been an active research field over the past two decades, triggered by the rising interests in exploring new physics and technologies with light at the nanoscale.…

physics.optics20178 cited

Tunable Resonance Coupling in Single Si Nanoparticle-Monolayer WS2 Structures

Sergey Lepeshov, Mingsong Wang, Alex Krasnok +8

Two-dimensional semiconducting transition metal dichalcogenides (TMDCs) are extremely attractive materials for optoelectronic applications in the visible and near-IR range. Here, w…