activity
20242026
collaborators

5 papers

quant-ph2026

Quadratic Quantum Polarimetry with Entangled Photon Pairs

Jinliang Ren, Vira Besaga, Ivan Lopushenko +5

Conventional polarimetry, including schemes leveraging entangled light, characterizes optical samples through linear transformations of polarization states. We introduce a two-phot…

physics.optics2026

Chiral phase memory of twisted light through multiple scattering

Igor Meglinski, Anton Sdobnov, Alexander Bykov

Chiroptical signals, optical responses sensitive to molecular handedness, are rapidly suppressed by multiple scattering, fundamentally limiting their use in turbid media. Here we s…

physics.optics2025

Decoding Orbital Angular Momentum in Turbid Tissue-like Scattering Medium via Fourier-Domain Deep Learning

Avraham Yosovich, Anton Sdobnov, Alexander Doronin +3

Structured light beams carrying orbital angular momentum (OAM), such as Laguerre-Gaussian modes, are promising tools for high-capacity optical communications and advanced biomedica…

physics.optics2025

Metasurface Polarimeter for Structural Imaging and Tissue Diagnostics

Paul Thrane, Chao Meng, Alexander Bykov +5

Histopathology, the study and diagnosis of disease through analysis of tissue samples, is an indispensable part of modern medicine. However, the practice is time consuming and labo…

physics.optics2024

Bridging classical and quantum approaches in optical polarimetry: Predicting polarization-entangled photon behavior in scattering environments

Vira R. Besaga, Ivan V. Lopushenko, Oleksii Sieryi +3

We explore quantum-based optical polarimetry as a potential diagnostic tool for biological tissues by developing a theoretical and experimental framework to understand polarization…