The Formation of Double Hot Jupiter Systems through von Zeipel-Lidov-Kozai Migration
arXiv:2505.04398 · doi:10.3847/1538-4357/add405
Abstract
The von Zeipel-Lidov-Kozai (ZLK) mechanism with tidal friction has been demonstrated as a promising avenue to generate hot Jupiters in stellar binary systems. Previous population studies of hot Jupiter formation have largely examined this mechanism in systems comprised of three bodies: two stars and one planet. However, because stars in a binary system form in similar environments with comparable metallicities, the formation of a single hot Jupiter in such a system may imply that the conditions are more likely met for the companion star, as well. We investigate the ZLK mechanism with tidal friction as a potential mechanism to produce double hot Jupiter systems in stellar binaries. Using N-body simulations, we characterize the evolution of two cold Jupiters, each orbiting one star in a binary system, undergoing mirrored ZLK migration. We then examine the robustness of this mechanism to asymmetries in stellar masses, planet masses, and planet orbital inclinations relative to the binary plane. We predict that, under the assumptions that (1) most hot Jupiters in binary star systems form through ZLK migration of primordially formed cold Jupiters and (2) if one star in a binary system forms a cold Jupiter, the second does as well, a comprehensive search could identify double hot Jupiters in up to ~9% of the close- to moderate- separation AU) binary systems that already host a known hot Jupiter. We also argue that a blind search for ZLK-migrated double hot Jupiters should prioritize twin stellar binaries with pericenter approaches of a few hundred AU.
Published in ApJ
References in corpus (37)
- Array Programming with NumPy
- The NumPy array: a structure for efficient numerical computation
- The Gaia mission
- Dynamical Outcomes of Planet-Planet Scattering
- Formation of Hot Planets by a combination of planet scattering, tidal circularization, and Kozai mechanism
- A million binaries from Gaia eDR3: sample selection and validation of Gaia parallax uncertainties
- Tidal dissipation in stars and giant planets
- The Mass of KOI-94d and a Relation for Planet Radius, Mass, and Incident Flux
- Suppression of extreme orbital evolution in triple systems with short range forces
- Steady-state planet migration by the Kozai-Lidov mechanism in stellar binaries
- The Orbit of WASP-12b is Decaying
- Falling Transiting Extrasolar Giant Planets
- Forward and Inverse Modeling of the Emission and Transmission Spectrum of GJ 436b: Investigating Metal Enrichment, Tidal Heating, and Clouds
- Cool Jupiters greatly outnumber their toasty siblings: Occurrence rates from the Anglo-Australian Planet Search
- Friends of Hot Jupiters. IV. Stellar companions beyond 50 AU might facilitate giant planet formation, but most are unlikely to cause Kozai-Lidov migration
- Chaos in the Test Particle Eccentric Kozai-Lidov Mechanism
- Visual Binaries in the Orion Nebula Cluster
- HAT-P-3b: A heavy-element rich planet transiting a K dwarf star
- Obliquity-Driven Sculpting of Exoplanetary Systems
- The Turbulent Origin of Outflow and Spin Misalignment in Multiple Star Systems
- Heavy metal rules. I. Exoplanet incidence and metallicity
- Chaotic Tides in Migrating Gas Giants: Forming Hot and Transient Warm Jupiters via High-Eccentricity Migration
- Understanding the Impacts of Stellar Companions on Planet Formation and Evolution: A Survey of Stellar and Planetary Companions within 25 pc
- Origins of Hot Jupiters from the Stellar Obliquity Distribution
- Secular chaotic dynamics in hierarchical quadruple systems, with applications to hot Jupiters in stellar binaries and triples
- WASP-94 A and B planets: hot-Jupiter cousins in a twin-star system
- Exploring the Dependence of Hot Jupiter Occurrence Rates on Stellar Mass with TESS
- Disk Truncation and Planet Formation in gamma Cephei
- Investigating the Planet-Metallicity Correlation for Hot Jupiters
- Orbital Architectures of Planet-Hosting Binaries II. Low Mutual Inclinations Between Planetary and Stellar Orbits
- A Possible Alignment Between the Orbits of Planetary Systems and their Visual Binary Companions
- Twins Among the Low Mass Spectroscopic Binaries
- Planets Across Space and Time (PAST). V. The evolution of hot Jupiters revealed by the age distribution of their host stars
- Self-Consistent Spin, Tidal and Dynamical Equations of Motion in the REBOUNDx Framework
- A new timestep criterion for N-body simulations
- A List of 49 New Stellar Twins from the Kepler Catalog of Eclipsing Binary Stars
- ASAS Census of Twins