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Exploring The Effects Of Disk Thickness On The Black Hole Reflection Spectrum

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arxiv 1712.05418 v2 pith:5QRVO2KO submitted 2017-12-14 astro-ph.HE astro-ph.GA

Exploring The Effects Of Disk Thickness On The Black Hole Reflection Spectrum

classification astro-ph.HE astro-ph.GA
keywords diskreflectionspectrumblackeffectsaccretionholethickness
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The relativistically-broadened reflection spectrum, observed in both AGN and X-ray binaries, has proven to be a powerful probe of the properties of black holes and the environments in which they reside. Being emitted from the inner-most regions of the accretion disk, this X-ray spectral component carries with it information not only about the plasma that resides in these extreme conditions, but also the black hole spin, a marker of the formation and accretion history of these objects. The models currently used to interpret the reflection spectrum are often simplistic, however, approximating the disk as an infinitely thin, optically thick plane of material orbiting in circular Keplerian orbits around the central object. Using a new relativistic ray tracing suite (Fenrir) that allows for more complex disk approximations, we examine the effects that disk thickness may have on the reflection spectrum. Assuming a lamp post corona, we find that finite disk thickness can have a variety of effects on the reflection spectrum, including a truncation of the blue wing (from self-shadowing of the accretion disk) and an enhancement of the red wing (from the irradiation of the central 'eye wall' of the inner disk). We make a first estimate on the systematic errors on black hole spin and height that may result from neglecting these effects.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. The emergence of X-ray emission lines during relativistic radio-jet formation in the changing-look active galactic nucleus 1ES 1927+654

    astro-ph.HE 2026-07 conditional novelty 6.0

    X-ray emission lines and a broad iron feature emerged in changing-look AGN 1ES 1927+654 concurrently with radio-jet formation and declining ionized outflows from 2022 to 2025.

  2. Black-Hole Spin Measurements from X-ray Reflection Spectroscopy: Quality Criteria and Community Recommendations

    astro-ph.HE 2026-07 conditional novelty 5.0

    Reflection-based black-hole spin measurements should be graded by detectability, uniqueness, and robustness, and classified into high-confidence, systematics-limited, provisional, or non-assessable tiers.