Skip to main content
Physical/Tech

Topological expansion of Boehm's brushes via structured light.

| Source: Proceedings of the National Academy of Sciences of the United States of America

We report an entoptic phenomenon in which the classical two-lobed Boehm's brushes are transformed into a multilobed structure by projecting spin-orbit-coupled light onto the human retina. These structured beams, composed of nonseparable superpositions of circular polarization and orbital angular momentum, produce azimuthally modulated entoptic patterns through polarization-dependent scattering in the retina. Unlike Haidinger's brushes, which arise from dichroic absorption in the macula, the obse

We report an entoptic phenomenon in which the classical two-lobed Boehm's brushes are transformed into a multilobed structure by projecting spin-orbit-coupled light onto the human retina. These structured beams, composed of nonseparable superpositions of circular polarization and orbital angular momentum, produce azimuthally modulated entoptic patterns through polarization-dependent scattering in the retina. Unlike Haidinger's brushes, which arise from dichroic absorption in the macula, the observed effect is driven by angular variations in scattering strength relative to the local polarization direction. In regions where scattering centers exhibit polarization orientations that converge toward a common point, their combined contributions reinforce one another, producing brighter and more sharply defined entoptic lobes whose number and orientation vary systematically with the topology of the spin-orbit stimulus. Psychophysical measurements across retinal eccentricities from 0.5 ° to 4 ° in eleven participants revealed that contrast detection thresholds decreased exponentially with eccentricity, consistent with polarization-sensitive scattering by isotropic structures in the nonfoveal retinal regions. From the psychophysical fits, the mean eccentricity at which the entoptic pattern reached a 50% threshold was [Formula: see text] with a 95% CI of [0.72, 1.34] ° , indicating that the spin-orbit-induced entoptic structure becomes perceptually robust at approximately 1 ° retinal eccentricity and that perception improves with increasing retinal eccentricity. Together, these findings demonstrate that spin-orbit light modulates scattering-based visual phenomena in previously unrecognized ways, enabling approaches for probing retinal structure and visual processing using topological features of light.

Read the original source →

Related Stories

Physical/Tech

Multiband condensate of magnons in two dimensions.

Wavelike bosonic particles can accumulate in a single mode characterized by a particular wavelength, and such condensates are at the heart of phenomena such as superconductivity and superfluidity where usually a single complex number describes their state. If there are several flavors of excitations or particles, a vector containing several complex numbers can characterize multicomponent condensation, thus opening new possibilities for textures, dynamics, and devices. Thus far, multicomponent co

Continue reading
Physical/Tech

Indirect reciprocity with dual private assessment.

People often cooperate out of concern for their reputation. The corresponding theory of indirect reciprocity predicts that such cooperation can only evolve if people's opinions of each other are sufficiently correlated. This correlation, however, can be difficult to achieve when individuals form their opinions independently from one another, as in private assessment models. In that case, errors can generate disagreements that propagate throughout a population. Here, we identify a simple mechanis

Continue reading
Physical/Tech

A genetic program for rapid initiation of axillary meristems at the onset of flowering.

Shoot branching patterns and their diversity arise from variable activities of axillary meristems (AMs). A common feature of flowering plants is delayed AM initiation and growth during the vegetative phase, followed by a sudden and rapid acceleration of apical AM initiation during the reproductive phase. The mechanisms underlying this pronounced developmental shift are poorly understood. During tomato floral transition, the primary shoot meristem (PSM) terminates in a flower after producing two

Continue reading
Physical/Tech

David Botstein: A pioneering geneticist and educator 1942-2026.

David Botstein, who died on February 27, 2026, was a towering figure in the field of modern molecular genetics. His research career was largely focused on the development of methods to better understand biological systems, beginning with his early work on Salmonella phage P22 and yeast, where he exploited the use of conditional lethal mutations as suppressors to identify genes with common functions and to order them in a pathway. He is best remembered for developing restriction fragment length p

Continue reading
Physical/Tech

Ultra-narrowband organic room-temperature phosphorescence achieved by boosting low-frequency vibronic coupling.

We pioneered a strategy based on low-frequency vibronic coupling to design narrowband room-temperature phosphorescent (RTP) materials. Here we select coronene derivative (CoDe) system and report that attaching aroyl group to the coronene core disrupts its intrinsic symmetry and introduces abundant low-frequency vibrational modes, thereby affording efficient room-temperature phosphorescence with a full width at half maximum (FWHM) of approximately 25 nm or narrower. In CoDe systems functionalized

Continue reading