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March 29, 2026SHILAP Revista de lepidopterología3 citationsOpen Access

Ring Asymmetry and Spin in M87*

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VBVadim Y. BernshteynNCNicholas S. ConroyMBMichi Bauböck

Key Points

  • The aim is to analyze the asymmetric ring of emission around M87* and its implications for black hole spin.
  • Utilized Event Horizon Telescope (EHT) images of M87*
  • Compared observed brightness asymmetry amplitudes with GRMHD model simulations
  • Assessed the effects of varying black hole spin on observed asymmetry
  • Three epochs of EHT data suggest a preference for ∣ a * ∣ ≳ 0.2 for strongly magnetized models.
  • Findings align with the Blandford–Znajek model indicating M87* has nonzero spin.
  • Future observations could yield improved constraints on black hole spin and jet-launching mechanisms.

Abstract

Abstract Event Horizon Telescope (EHT) images of the supermassive black hole M87* depict an asymmetric ring of emission. General relativistic magnetohydrodynamic (GRMHD) models of M87* and its accretion disk predict that the amplitude and location of the ring’s peak brightness asymmetry should fluctuate due to turbulence in the source plasma. We compare the observed distribution of brightness asymmetry amplitudes to the simulated distribution in GRMHD models, across varying black hole spin a * . We show that, for strongly magnetized (MAD) models, three epochs of EHT data marginally disfavor ∣ a * ∣ ≲ 0.2. This is consistent with the Blandford–Znajek model for M87’s jet, which predicts that M87* should have nonzero spin. We show quantitatively how future observations could improve spin constraints and discuss how improved spin constraints could distinguish between differing jet-launching mechanisms and black hole growth scenarios.

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Cite This Study

Bernshteyn et al. (2026) studied this question.

synapsesocial.com/papers/69c8c0b0de0f0f753b39b95ahttps://doi.org/10.3847/1538-4357/ae34af
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