The stellar obliquity is the angle between a star's spin and a planet's orbital angular momentum. The Rossiter-McLaughlin effect constrains the angle between the sky projections of those two axes, rather than a component of . If the orbital and stellar-spin inclinations to the line of sight are and , then ; alone generally does not determine . Large misalignments constrain formation and planetary migration, but can also reflect a tilted birth disc.
A transiting body hides different velocity regions of a rotating stellar disc and causes an anomalous measured Doppler shift. Its time dependence constrains the sky-projected spin-orbit angle, which is not generally the full stellar obliquity.

Articles by others on the same topic (0)

There are currently no matching articles.