Simulated gravitational lensing in the undergraduate laboratory

This paper presents a method for fabricating acrylic lenses that simulate the gravitational deflection of light. The fabricated lenses reproduce key features of strong gravitational lensing, while the simulation is further extended to the weak- and microlensing regimes with images analogous to modern astronomical observations. The simulated mass of the lens is measured from the quantitative analysis of the lensed images in each gravitational lensing regime. These independently measured masses are mutually consistent and agree with the values predicted from the machined lens curvature.

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Publication Details

Journal
American Journal of Physics
Published
2026-09-22
DOI
https://doi.org/10.1119/5.0292430
Primary Topic
Experimental and Theoretical Physics Studies
Type
article
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article

Simulated gravitational lensing in the undergraduate laboratory

Daniel FitzGreen
American Journal of Physics
Experimental and Theoretical Physics Studies
article

Simulated gravitational lensing in the undergraduate laboratory

Daniel FitzGreen
article en

Abstract

This paper presents a method for fabricating acrylic lenses that simulate the gravitational deflection of light. The fabricated lenses reproduce key features of strong gravitational lensing, while the simulation is further extended to the weak- and microlensing regimes with images analogous to modern astronomical observations. The simulated mass of the lens is measured from the quantitative analysis of the lensed images in each gravitational lensing regime. These independently measured masses are mutually consistent and agree with the values predicted from the machined lens curvature.

American Journal of PhysicsVol. 94(10)
McMaster University (CA)
Openalex Percentile: Top 10%
Experimental and Theoretical Physics Studies
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