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March 6, 2026Space Science Reviews1 citationsOpen Access

Tilted, Warped, and Eccentric Disks

PFP. Chris FragileAIAdam IngramGMGibwa Musoke

Key Points

  • This review aims to explore how tilts and eccentricities affect the dynamics and appearance of accreting disks.
  • Reviewed precession types in eccentric and tilted orbits using general relativity and Newtonian frameworks.
  • Analyzed observational and theoretical results related to tilted and eccentric disks.
  • Investigated connections between quasi-periodic oscillations and disk phenomena.
  • Identified distinct dynamics introduced by tilted and warped disks around compact objects.
  • Observed unique thermodynamic behaviors in systems with such disk orientations.
  • Found relationships between disk characteristics and quasi-periodic oscillation patterns.

Abstract

Abstract We review some of the interesting consequences that tilts, warps, and eccentricities can introduce into the dynamics, thermodynamics, and observational appearance of accreting systems, with an emphasis on disks around black holes and compact stars. We begin with a review of the two types of precession that are associated with eccentric and tilted orbits in general relativity and Newtonian gravity. We then discuss the types of accretion systems that may manifest tilted or eccentric disks. In separate sections we discuss first tilted and then eccentric disks, each section covering relevant and interesting observational, theoretical, and numerical results. Next, we explore potential connections between the phenomenology of quasi-periodic oscillations and either tilted or eccentric disks. Finally, we present some concluding thoughts and discuss future directions this research might take.

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Cite This Study

Fragile et al. (2026) studied this question.

synapsesocial.com/papers/69aa70b8531e4c4a9ff5ab40https://doi.org/10.1007/s11214-026-01280-z
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