activity
20182021
most citedDiffusion-inspired time-varying phosphorescent decay in nanostructured environment

23 citations · 27 across the 6 of their papers we have counts for

collaborators

9 papers

physics.optics2021

Multipole Engineering of Attractive-Repulsive and Bending Optical Forces

Denis A. Kislov, Egor A. Gurvitz, Alexander A. Pavlov +4

Focused laser beams allow controlling mechanical motion of objects and can serve as a tool for assembling complex micro and nano structures in space. While in a vast majority of ca…

physics.optics2020

Controlling wave-front shape and propagation time with tunable disordered non-Hermitian multilayers

Denis Novitsky, Dmitry Lyakhov, Dominik Michels +3

Unique and flexible properties of non-Hermitian photonic systems attract ever-increasing attention via delivering a whole bunch of novel optical effects and allowing for efficient…

physics.optics20202 cited

Theory, observation and ultrafast response of novel hybrid anapole states

Adrià Canós Valero, Egor A. Gurvitz, Fedor A. Benimetskiy +10

Modern nanophotonics has witnessed the rise of "electric anapoles", destructive interferences of electric dipoles and toroidal electric dipoles, actively exploited to cancel electr…

physics.optics2019

Nanovortex-driven all-dielectric optical diffusion boosting and sorting concept for lab-on-a-chip platforms

Adrià Canós Valero, Denis Kislov, Egor A. Gurvitz +5

The ever-growing field of microfluidics requires precise and flexible control over fluid flow at the micro- and nanoscales. Current constraints demand a variety of controllable com…

physics.optics20191 cited

Magnetic Octupole Response of Dielectric Oligomers

Pavel D. Terekhov, Andrey B. Evlyukhin, Dmitrii Redka +3

The development of new approaches to tuning the resonant magnetic response of simple all-dielectric nanostructures is very important in modern nanophotonics. Here we show that a re…

physics.optics20191 cited

Nano-scale tunable optical binding mediated by hyperbolic metamaterials

N. A. Kostina, D. A. Kislov, A. N. Ivinskaya +5

Carefully designed nanostructures can inspire new type of optomechanical interactions and allow surpassing limitations set by classical diffractive optical elements. Apart from str…