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September 10, 2025The Astrophysical Journal Letters16 citationsOpen Access

Near-horizon Polarization as a Diagnostic of Black Hole Spacetime

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YHYehui HouJHJiewei HuangMGMinyong Guo

Key Points

  • Identifying a near-horizon polarization pattern allows for precise measurements of black hole spin.
  • The analysis reveals that polarization is influenced solely by spacetime geometry and observer's perspective.
  • Utilizing synchrotron emission in high-conductivity regimes enhances the robustness of polarization signatures.
  • Observations with future space-based interferometry could enable detection of this distinct polarization pattern.

Abstract

Abstract A key challenge in imaging supermassive black holes is disentangling gravitational effects from plasma physics in order to accurately determine spacetime properties, particularly black hole spin. In this Letter, we present a fully covariant and rigorous analysis of the synchrotron emission from accreting plasma in the equatorial plane in the stationary, axisymmetric, high-conductivity regime and identify—for the first time—a distinctive near-horizon polarization pattern that remains robust across different flow structures. This pattern arises from strong frame dragging near the event horizon, which induces a degeneracy among plasma flow and magnetic field configurations, yielding a polarization signature determined solely by the spacetime geometry and the observer’s inclination. The near-horizon polarization thus offers a clean and precise probe of black hole spin and other fundamental parameters. If future space-based millimeter very long baseline interferometry observations can resolve synchrotron emission originating within approximately 1% of the event horizon radius in M87* or Sgr A*, this universal polarization pattern may become observable.

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Cite This Study

Hou et al. (2025) studied this question.

synapsesocial.com/papers/68c19f9154b1d3bfb60dadb8https://doi.org/10.3847/2041-8213/adee09
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