Fisher Information as an Operational Metric for Structured Optical Beams

Fuente: arXiv
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Main Authors: Sumaya-Martinez, J., Mulia-Rodriguez, J.
Format: Preprint
Published: 2025
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author Sumaya-Martinez, J.
Mulia-Rodriguez, J.
author_facet Sumaya-Martinez, J.
Mulia-Rodriguez, J.
contents Structured optical beams possess rich spatial features that are commonly characterized using entropic measures of field complexity. However, such measures do not directly quantify the operational usefulness of optical structure for parameter estimation and sensing. Here we introduce Fisher information as an operational metric to assess the metrological content of structured optical fields. By treating the measured intensity distribution as a statistical object, we define Fisher information with respect to physically relevant parameters, such as transverse displacement. We demonstrate that optical modes with comparable Shannon entropy can exhibit markedly different Fisher information, revealing sensitivity features associated with nodal structure and local curvature. Using Hermite--Gaussian modes as minimal test cases, we show that increasing modal order systematically enhances Fisher information. We then extend the analysis to two widely used families in structured light: Laguerre--Gaussian vortex beams and finite-energy Bessel--Gauss beams. Across these representative families, Fisher information provides a unified and experimentally accessible criterion for comparing structured optical fields in sensing applications.
format Preprint
id arxiv_https___arxiv_org_abs_2512_23538
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Fisher Information as an Operational Metric for Structured Optical Beams
Sumaya-Martinez, J.
Mulia-Rodriguez, J.
Optics
Structured optical beams possess rich spatial features that are commonly characterized using entropic measures of field complexity. However, such measures do not directly quantify the operational usefulness of optical structure for parameter estimation and sensing. Here we introduce Fisher information as an operational metric to assess the metrological content of structured optical fields. By treating the measured intensity distribution as a statistical object, we define Fisher information with respect to physically relevant parameters, such as transverse displacement. We demonstrate that optical modes with comparable Shannon entropy can exhibit markedly different Fisher information, revealing sensitivity features associated with nodal structure and local curvature. Using Hermite--Gaussian modes as minimal test cases, we show that increasing modal order systematically enhances Fisher information. We then extend the analysis to two widely used families in structured light: Laguerre--Gaussian vortex beams and finite-energy Bessel--Gauss beams. Across these representative families, Fisher information provides a unified and experimentally accessible criterion for comparing structured optical fields in sensing applications.
title Fisher Information as an Operational Metric for Structured Optical Beams
topic Optics
url https://arxiv.org/abs/2512.23538