Sub-acoustic resolution photoacoustic imaging through scattering layers using speckle correlations

Fuente: arXiv
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Autores principales: Keenlyside, Benjamin, B., Arnon A., Marques, Dylan, Vellekoop, Ivo, Guggenheim, James
Formato: Preprint
Publicado: 2026
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author Keenlyside, Benjamin
B., Arnon A.
Marques, Dylan
Vellekoop, Ivo
Guggenheim, James
author_facet Keenlyside, Benjamin
B., Arnon A.
Marques, Dylan
Vellekoop, Ivo
Guggenheim, James
contents Optical scattering presents a major obstacle to high resolution imaging in biological tissue and other turbid media. Conventional photoacoustic imaging can partially overcome this obstacle, enabling imaging of optical absorption in the multiple-scattering regime, but its resolution remains limited by acoustic diffraction. In this work we explore a strategy to overcome this limit by exploiting correlations in the illumination patterns produced by coherent scattered light. Combining controlled speckle translations with photoacoustic signal detection, this method enables the recovery of optical resolution images within acoustically selected regions, while overcoming the strict decorrelation range limitations of other speckle correlation techniques. In proof-of-concept experiments, we demonstrate imaging of objects hidden behind an opaque diffuser at sub-acoustic diffraction limited (<11um) resolution, over a >5mm^2 field of view much larger than the effective speckle decorrelation range. These results suggest that speckle correlation based photoacoustic imaging may offer a route to high resolution imaging of optical absorption under scattering conditions where conventional optical or photoacoustic techniques are fundamentally limited.
format Preprint
id arxiv_https___arxiv_org_abs_2604_24168
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Sub-acoustic resolution photoacoustic imaging through scattering layers using speckle correlations
Keenlyside, Benjamin
B., Arnon A.
Marques, Dylan
Vellekoop, Ivo
Guggenheim, James
Optics
Optical scattering presents a major obstacle to high resolution imaging in biological tissue and other turbid media. Conventional photoacoustic imaging can partially overcome this obstacle, enabling imaging of optical absorption in the multiple-scattering regime, but its resolution remains limited by acoustic diffraction. In this work we explore a strategy to overcome this limit by exploiting correlations in the illumination patterns produced by coherent scattered light. Combining controlled speckle translations with photoacoustic signal detection, this method enables the recovery of optical resolution images within acoustically selected regions, while overcoming the strict decorrelation range limitations of other speckle correlation techniques. In proof-of-concept experiments, we demonstrate imaging of objects hidden behind an opaque diffuser at sub-acoustic diffraction limited (<11um) resolution, over a >5mm^2 field of view much larger than the effective speckle decorrelation range. These results suggest that speckle correlation based photoacoustic imaging may offer a route to high resolution imaging of optical absorption under scattering conditions where conventional optical or photoacoustic techniques are fundamentally limited.
title Sub-acoustic resolution photoacoustic imaging through scattering layers using speckle correlations
topic Optics
url https://arxiv.org/abs/2604.24168