A Chondritic Solar Neighborhood
arXiv:2306.03743 · doi:10.3847/PSJ/acdef3
Abstract
A persistent question in exoplanet demographics is whether exoplanetary systems form from similar compositional building blocks to our own. Polluted white dwarf stars offer a unique way to address this question as they provide measurements of the bulk compositions of exoplanetary material. We present a statistical analysis of the rocks polluting oxygen-bearing white dwarfs and compare their compositions to rocks in the Solar System. We find that the majority of the extrasolar rocks are consistent with the composition of typical chondrites. Measurement uncertainties prevent distinguishing between chondrites and bulk Earth, but do permit detecting the differences between chondritic compositions and basaltic or continental crust. We find no evidence of crust amongst the polluted white dwarfs. We show that the chondritic nature of extrasolar rocks is also supported by the compositions of local stars. While galactic chemical evolution results in variations in the relative abundances of rock-forming elements spatially and temporally on galaxy-wide scales, the current sample of polluted white dwarfs are sufficiently young and close to Earth that they are not affected by this process. We conclude that exotic compositions are not required to explain the majority of observed rock types around polluted white dwarfs, and that variations between exoplanetary compositions in the stellar neighborhood are generally not due to significant differences in the initial composition of protoplanetary disks. Nonetheless, there is evidence from stellar observations that planets formed in the first several billion years in the Galaxy have lower metal core fractions compared with Earth on average.
Accepted to PSJ
References in corpus (18)
- Can we constrain interior structure of rocky exoplanets from mass and radius measurements?
- Stellar Abundances in the Solar Neighborhood: The Hypatia Catalog
- The Chemical Composition of an Extrasolar Kuiper-Belt-Object
- Likely detection of water-rich asteroid debris in a metal-polluted white dwarf
- A new class of Super-Earths formed from high-temperature condensates: HD219134 b, 55 Cnc e, WASP-47 e
- Compositions of Planetary Debris around Dusty White Dwarfs
- Does a Differentiated, Carbonate-Rich, Rocky Object Pollute the White Dwarf SDSSJ104341.53+085558.2?
- Convective Overshoot and Macroscopic Diffusion in Pure-Hydrogen Atmosphere White Dwarfs
- Polluted White Dwarfs: Mixing Regions and Diffusion Timescales
- White dwarf pollution by hydrated planetary remnants: Hydrogen and Metals in WD J204713.76-125908.9
- Solar Abundances of Rock Forming Elements, Extreme Oxygen and Hydrogen in a Young Polluted White Dwarf
- Polluted White Dwarfs Reveal Exotic Mantle Rock Types on Exoplanets in our Solar Neighborhood
- Modeling of the Variable Circumstellar Absorption Features of WD 1145+017
- Host-star and exoplanet compositions: a pilot study usinga wide binary with a polluted white dwarf
- Icy Exomoons Evidenced by Spallogenic Nuclides in Polluted White Dwarfs
- Asymmetric Systematic Errors
- Planetary mass-radius relations across the galaxy
- Uniform Silicon Isotope Ratios Across the Milky Way Galaxy
Cited by in corpus (5)
- Polluting White Dwarfs with Oort Cloud Comets
- Characterizing planetary material accreted by cool helium atmosphere white dwarfs using an exponentially decaying disc model
- Diversity of Exoplanets
- Do White Dwarfs Sample Water-Rich Planetary Material?
- Modeling Circumstellar Gas Emission around a White Dwarf Using Cloudy