Searcharxiv⌕ Search

arXiv subjects

Anastasia Nikitina

Publications and source records attributed to Anastasia Nikitina.

3 recordsLinked to original sources

Achiral nanostructures: perturbative harmonic generation and dichroism under vortex and vector beams illumination

In this study, we investigate the nonlinear optical phenomena emerging from the interaction of vortex and vector beams with achiral nanoparticles or nanostructures. We reveal the conditions under which linear or nonlinear dichroism can be observed. Despite the achiral symmetry of the nanostructure, the interplay between the symmetries of the vortex beam, the nanostructure, and the crystalline lattice of the nanostructure material may result in circular dichroism in the nonlinear regime. We derive a formula that describes the conditions for the appearance of circular dichroism across a broad range of scenarios, taking into account all the symmetries. Building on these findings, we have determined the conditions for both linear and nonlinear dichroism when illuminated by vector beams. We believe that this work provides important insights that can enhance the design of chiral sensors and optical traps, making them more versatile and effective.

physics.optics↗

Exceptional points in single open acoustic resonator due to the symmetry breaking

Exceptional points (EPs) have been widely studied in quantum mechanics, condensed matter physics, optics and photonics. However, their potential in acoustics has only recently been recognized due to the rapid development of acoustic metamaterials. This paper proposes a method for achieving EP conditions in acoustic resonators by lowering their symmetry and enabling resonant mode interaction. The formation of EPs is predicted through direct numerical simulation supported by coupled mode theory and resonant state expansion. These findings have significant implications for the design and optimization of acoustic metamaterials for applications such as acoustic sensing and noise reduction.

physics.class-ph↗

When does nonlinear circular dichroism appear in achiral dielectric nanoparticles?

Sometimes it appears, sometimes it does not. We present a theoretical study of circular dichroism in the second-harmonic signal of single dielectric nanostructures with different symmetries and noncentrosymmetric materials. We show that this effect is not fully identified only by macroscopic and lattice symmetries, but their relative orientation as well. Based on the cumbersome symmetry and modal analysis, we provide a general and very simple formula to determine whether the dichroism exists, and a table with the most significant cases.

physics.optics↗