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20242026
most citedSplitting algorithms for paraxial and Itô-Schrödinger models of wave propagation in random media

2 citations · 2 across the 2 of their papers we have counts for

collaborators

8 papers

physics.optics2026

ML-based approach to classification and generation of structured light propagation in turbulent media

Aokun Wang, Anjali Nair, Zhongjian Wang +1

We study the classification task of structured-light beams after propagation through a random turbulent medium. The received speckle patterns are generated by numerical simulation…

math.NA20262 cited

Splitting algorithms for paraxial and Itô-Schrödinger models of wave propagation in random media

Guillaume Bal, Anjali Nair

This paper introduces a full discretization procedure to solve wave beam propagation in random media modeled by a paraxial wave equation or an Itô-Schrödinger stochastic partial…

math.NA2026

Optimal error bounds on the exponential integrator for dispersive equations with highly concentrated potential

Guillaume Bal, Chushan Wang

We study a one-dimensional linear dispersive equation of differential order with concentrated potential of extension with , featurin…

math.AP2025

Complex Gaussianity and spatio-frequential memory effect of random wave processes

Guillaume Bal, Anjali Nair

Wavefield speckle patterns are generated by interference of randomly scattered coherent light. In the weak-coupling regime of the Itô-Schrödinger paraxial model for long-distance…

math.AP2025

Long distance propagation of wave beams in paraxial regime

Guillaume Bal, Anjali Nair

This paper concerns the propagation of high frequency wave-beams in highly turbulent atmospheres. Using a paraxial model of wave propagation, we show in the long-distance weak-coup…

math.AP2025

Long distance propagation of light in random media with partially coherent sources

Guillaume Bal, Anjali Nair

Optical beam propagation in random media is characterized by familiar speckle patterns generated by intricate interference effects. Such patterns may be modified and possibly atten…