Proceedings of the Royal Society A Mathematical Physical and Engineering Sciences· 2026Q1
Conformality in Hawksmoor's ceiling, the Roman Pantheon and Mercator's projection
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- 2026year
Short summary
The coffering of the Roman Pantheon's dome and Hawksmoor's ceiling design are explained by a conformal mapping, which preserves angles and is the inverse of Mercator's projection.
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Key points
- The coffering of the Roman Pantheon and Hawksmoor's ceiling can be modeled using conformal mapping.
- This mapping preserves angles and transforms a planar grid of squares into the dome's rib structure.
- The conformal mapping is the inverse of Mercator's projection.
- This geometric principle minimizes an energy functional, indicating stability.
- The model provides parameter-free predictions that match photographic and direct measurements.
AI-generated from the title and abstract; the full text is not read.
Abstract
Abstract The dome of the Roman Pantheon is coffered with ribs surrounding sunken lacunaria, thus forming a grid. How this is achieved given the curvature of the dome has long been a subject for study and speculation. Although detailed measurements now exist, thus far no single principle has emerged which fixes the overall geometry. Similar coffering occurs in Hawksmoor's design for the ceiling of the Buttery in All Souls College, Oxford. Both these examples are doubly curved, making their tiling with (almost) square coffers problematic. We address this using methods of differential geometry. Observing that the ribs intersect orthogonally, we hypothesize that they are images under a conformal (angle preserving) mapping of a uniform M×N tiling of a planar rectangle with squares. This is unique and is the inverse of Mercator's projection of the ceiling to the rectangle. It minimizes an energy functional which captures the sum of the elastic and gravitational energies in the long wavelength limit. Thus, any construction method which is stable to long wavelength deformations necessarily leads to a conformal coffering. This then gives quantitative predictions with no adjustable parameters for the relative sizes and locations of each coffer, which are in good agreement with photographic data, and consistent with direct measurements of the Pantheon.
The authors' abstract, as published at the source. Proceedings of the Royal Society A Mathematical Physical and Engineering Sciences, 2026 · DOI ↗
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Field: Visual Arts and Performing Arts
Visual Arts and Performing ArtsArts and Humanities