activity
20152021
collaborators

8 papers

physics.optics2021

High-resolution digital control of highly multimode laser

Chene Tradonsky, Simon Mahler, Gaodi Cai +4

A rapid and efficient method for generating laser beams with controlled intensity, phase and coherence distributions is presented. It is based on a degenerate cavity laser in which…

physics.optics2020

Exact Mapping Between a Laser Network Loss Rate and the Classical XY Hamiltonian by Laser Loss Control

Igor Gershenzon, Geva Arwas, Sagie Gadasi +4

Recently, there has been growing interest in the utilisation of physical systems as heuristic optimisers for classical spin Hamiltonians. A prominent approach employs gain-dissipat…

physics.optics2019

Rapid fair sampling of XY spin Hamiltonian with a laser simulator

Vishwa Pal, Simon Mahler, Chene Tradonsky +2

Coupled oscillators such as lasers, OPO's and BEC polaritons can rapidly and efficiently dissipate into a stable phase locked state that can be mapped onto the minimal energy (grou…

physics.optics2019

Improved phase locking of laser arrays with nonlinear coupling

Simon Mahler, Matthew Goh, Chene Tradonsky +2

An arrangement based on a degenerate cavity laser for forming an array of non-linearly coupled lasers with an intra-cavity saturable absorber is presented. More than lasers we…

physics.optics2019

Dynamics of dissipative topological defects in coupled phase oscillators

Simon Mahler, Vishwa Pal, Chene Tradonsky +3

The dynamics of dissipative topological defects in a system of coupled phase oscillators, arranged in one and two-dimensional arrays, is numerically investigated using the Kuramoto…

physics.optics2018

Rapid Phase Retrieval by Lasing

Chene Tradonsky, Oren Raz, Vishwa Pal +3

Reconstructing an object solely from its scattered intensity distribution is a common problem that occurs in many applications. Currently, there are no efficient direct methods to…