collaborators

6 papers

physics.optics2026

Mapping Source-Resolved Phase-Noise Transfer in Soliton Microcombs

Zhongan Zhao, Aleksandr Razumov, Viswanathan Sankar +2

Phase noise limits the coherence and stability of soliton microcombs, yet its origin is difficult to trace because multiple noise sources act simultaneously. It is often represente…

quant-ph2026

Machine Learning based Optimization of CV-QKD Under Practical Constraints

Svitlana Matsenko, Amirhossein Ghazisaeidi, Marcin Jarzyna +4

Practical hardware limitations, including finite transmitter and receiver filter lengths as well as the finite resolution of digital-to-analog and analog-to-digital converters, lea…

physics.optics2025

Subspace tracking: a novel measurement method to test the standard phase noise model of optical frequency combs

Darko Zibar, Holger Heebøll, Jasper Riebesehl +3

The introduction of digital signal processing (DSP) assisted coherent detection has been a cornerstone of modern fiber-optic communication systems. The ability to digitally, i.e. a…

physics.optics2025

Impact of nonlinear spectral broadening on the phase noise properties of electro-optic frequency comb

Aleksandr Razumov, Yijia Cai, Jasper Riebesehl +5

Electro-optic modulation is an attractive approach for generating flat, stable, and low-noise optical frequency combs with relatively high power per comb line. However, a key limit…

physics.optics2025

Interference Fringe Mitigation in Short-Delay Self-Heterodyne Laser Phase Noise Measurements

Jasper Riebesehl, David C. Nak, Darko Zibar

Self-heterodyne techniques are widely used for laser phase noise characterization due to their simple experimental setup and the removed need for a reference laser. However, when i…

cs.IT2025

Mode Mismatch Mitigation in Gaussian-Modulated CV-QKD

Svitlana Matsenko, Amirhossein Ghazisaeidi, Marcin Jarzyna +4

Technical limitations in pulse shaping lead to mode mismatch, which significantly reduces the secure key rate in CV-QKD systems. To address this, a machine learning approach is emp…