English

Is The Starry Night Turbulent?

Popular Physics 2019-02-18 v2 Fluid Dynamics

Abstract

Vincent van Gogh's painting, The Starry Night, is an iconic piece of art and cultural history. The painting portrays a night sky full of stars, with eddies (spirals) both large and small. \cite{Kolmogorov1941}'s description of subsonic, incompressible turbulence gives a model for turbulence that involves eddies interacting on many length scales, and so the question has been asked: is The Starry Night turbulent? To answer this question, we calculate the azimuthally averaged power spectrum of a square region (1165×11651165 \times 1165 pixels) of night sky in The Starry Night. We find a power spectrum, P(k)\mathcal{P}(k), where kk is the wavevector, that shares the same features as supersonic turbulence. It has a power-law P(k)k2.1±0.3\mathcal{P}(k) \propto k^{-2.1\pm0.3} in the scaling range, 34k8034 \leq k \leq 80. We identify a driving scale, kD=3k_\text{D} = 3, dissipation scale, kν=220k_\nu = 220 and a bottleneck. This leads us to believe that van Gogh's depiction of the starry night closely resembles the turbulence found in real molecular clouds, the birthplace of stars in the Universe.

Cite

@article{arxiv.1902.03381,
  title  = {Is The Starry Night Turbulent?},
  author = {James Beattie and Neco Kriel},
  journal= {arXiv preprint arXiv:1902.03381},
  year   = {2019}
}

Comments

6 pages, 4 figures

R2 v1 2026-06-23T07:36:28.869Z