Role of a Quarter-Wave Plate in Confocal Microscopy: Signature of Spin-Orbit Interactions

Fuente: arXiv
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Main Authors: Lan, Wenze, Lögl, Anton, Benelajla, Meryem, Schäfermeier, Clemens, Karrai, Khaled, Urbaszek, Bernhard
Format: Preprint
Published: 2026
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author Lan, Wenze
Lögl, Anton
Benelajla, Meryem
Schäfermeier, Clemens
Karrai, Khaled
Urbaszek, Bernhard
author_facet Lan, Wenze
Lögl, Anton
Benelajla, Meryem
Schäfermeier, Clemens
Karrai, Khaled
Urbaszek, Bernhard
contents Spin-orbit interactions of light couple polarization and spatial degrees of freedom, underpinning phenomena such as the spin Hall effect of light. Although widely explored at interfaces and in tightly focused beams, their impact in nominally paraxial confocal systems remains largely unexamined. Here we show that a single quarter-wave plate embedded in a simple confocal geometry between polarizers can strongly reshape the transverse structure of a Gaussian beam. We observe an enhancement of the polarization extinction ratio by more than two orders of magnitude, accompanied by a transformation of the Gaussian intensity profile into a first-order Hermite-Gaussian-like two-lobe mode. The orientation of this pattern is continuously tunable via rotation of the wave plate, evidencing polarization-controlled reorientation of the transverse field. To explain these observations, we introduce a minimal extension of Jones matrix formalism incorporating complex parameters that quantitatively reproduces the measurements. Our results uncover a previously overlooked form of spin-orbit-mediated mode control in standard confocal optics and establish a simple route to on-demand spatial mode engineering for applications in resonant spectroscopy, optical imaging and quantum optics.
format Preprint
id arxiv_https___arxiv_org_abs_2603_26485
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Role of a Quarter-Wave Plate in Confocal Microscopy: Signature of Spin-Orbit Interactions
Lan, Wenze
Lögl, Anton
Benelajla, Meryem
Schäfermeier, Clemens
Karrai, Khaled
Urbaszek, Bernhard
Optics
Materials Science
Spin-orbit interactions of light couple polarization and spatial degrees of freedom, underpinning phenomena such as the spin Hall effect of light. Although widely explored at interfaces and in tightly focused beams, their impact in nominally paraxial confocal systems remains largely unexamined. Here we show that a single quarter-wave plate embedded in a simple confocal geometry between polarizers can strongly reshape the transverse structure of a Gaussian beam. We observe an enhancement of the polarization extinction ratio by more than two orders of magnitude, accompanied by a transformation of the Gaussian intensity profile into a first-order Hermite-Gaussian-like two-lobe mode. The orientation of this pattern is continuously tunable via rotation of the wave plate, evidencing polarization-controlled reorientation of the transverse field. To explain these observations, we introduce a minimal extension of Jones matrix formalism incorporating complex parameters that quantitatively reproduces the measurements. Our results uncover a previously overlooked form of spin-orbit-mediated mode control in standard confocal optics and establish a simple route to on-demand spatial mode engineering for applications in resonant spectroscopy, optical imaging and quantum optics.
title Role of a Quarter-Wave Plate in Confocal Microscopy: Signature of Spin-Orbit Interactions
topic Optics
Materials Science
url https://arxiv.org/abs/2603.26485