Regression of high dimensional angular momentum states of light

06/20/2022
by   Danilo Zia, et al.
0

The Orbital Angular Momentum (OAM) of light is an infinite-dimensional degree of freedom of light with several applications in both classical and quantum optics. However, to fully take advantage of the potential of OAM states, reliable detection platforms to characterize generated states in experimental conditions are needed. Here, we present an approach to reconstruct input OAM states from measurements of the spatial intensity distributions they produce. To obviate issues arising from intrinsic symmetry of Laguerre-Gauss modes, we employ a pair of intensity profiles per state projecting it only on two distinct bases, showing how this allows to uniquely recover input states from the collected data. Our approach is based on a combined application of dimensionality reduction via principal component analysis, and linear regression, and thus has a low computational cost during both training and testing stages. We showcase our approach in a real photonic setup, generating up-to-four-dimensional OAM states through a quantum walk dynamics. The high performances and versatility of the demonstrated approach make it an ideal tool to characterize high dimensional states in quantum information protocols.

READ FULL TEXT

page 3

page 5

page 7

research
01/28/2019

Efficient High-dimensional Quantum Key Distribution with Hybrid Encoding

We propose a schematic setup of quantum key distribution (QKD) with an i...
research
12/29/2020

𝒫𝒯-Symmetric Unambiguous Distinguishing of Three Quantum States

Beyond the two-state case, the optimal state distinguishing is solved on...
research
11/22/2020

Angular Embedding: A New Angular Robust Principal Component Analysis

As a widely used method in machine learning, principal component analysi...
research
03/30/2022

Identification of diffracted vortex beams at different propagation distances using deep learning

Orbital angular momentum of light is regarded as a valuable resource in ...
research
12/15/2021

Experimental quantum advantage with quantum coupon collector

An increasing number of communication and computational schemes with qua...
research
11/21/2019

Local certification of programmable quantum devices of arbitrary high dimensionality

The onset of the era of fully-programmable error-corrected quantum compu...
research
03/01/2020

Dimensionality reduction to maximize prediction generalization capability

This work develops an analytically solvable unsupervised learning scheme...

Please sign up or login with your details

Forgot password? Click here to reset