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20212025
most citedBound states in the continuum in strong-coupling and weak-coupling regimes under the cylinder-ring transition

37 citations · 38 across the 7 of their papers we have counts for

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physics.optics2025

Deeply Subwavelength Blue-Range Nanolaser

Daria Khemelevskaia, Nikolai Solodovchenko, Elizaveta Sapozhnikova +5

Modern high-definition display and augmented reality technologies require the development of ultracompact micro- and nano-pixels with colors covering the full gamut and high bright…

physics.optics2025

Experimental observation of bulk Fermi arc in single dielectric resonator

N. Solodovchenko, F. Zhang, M. Bochkarev +4

The bulk Fermi arc is a fundamental non-Hermitian topological feature that connects two exceptional points (EPs), featuring the transition between Hermitian and non-Hermitian world…

physics.optics2024

Quasinormal mode as a foundational framework for all electromagnetic Fano resonances

Mikhail Bochkarev, Nikolay Solodovchenko, Kirill Samusev +3

Fano profiles are observed across various fields of wave physics. They emerge from interference phenomena and are quantified by the asymmetry parameter q. In optics, q is usually c…

physics.optics2024

Multichannel sensing platform: galleries of tunable hot spots in ring-disk dielectric dimer with rectangular cross-sections

A. P. Chetverikova, N. S. Solodovchenko, M. E. Bochkarev +3

The creation of highly enhanced and localized electromagnetic fields in dielectric structures with low losses, that is, hot spot technology, is an important applied and fundamental…

physics.optics2023

Engineering of high- states via collective mode coupling in chains of Mie resonators

Mikhail Mikhailovskii, Maria Poleva, Nikolay Solodovchenko +5

Efficient trapping of light in nanostructures is essential for the development of optical devices that are based on the interaction between light and matter. In this work, we show…

physics.optics2023

Quadruplets of exceptional points and bound states in the continuum in dielectric rings

Nikolay Solodovchenko, Kirill Samusev, Mikhail Limonov

In photonics, most systems are non-Hermitian due to radiation into open space and material losses. At the same time, non-Hermitianity defines a new physics, in particular, it gives…