Chemical compositions of giant planets provide a means to constrain how and where they form. Traditionally, super-stellar elemental abundances in giant planets were thought to be possible due to accretion of metal-rich solids. Such enrichments are accompanied by oxygen-rich compositions (i.e. C/O below the disc’s value, assumed to be solar, C/O = 0.54). Without solid accretion, the planets are expected to have sub-solar metallicity, but high C/O ratios. This arises because the solids are dominated by oxygen-rich species, e.g. H$_2$O and CO$_2$, which freeze out in the disc earlier than CO, leaving the gas metal poor but carbon rich. Here we demonstrate that super-solar metallicities can be achieved by gas accretion alone when growth and rad...
As stellar compositions evolve over time in the Milky Way, so will the resulting planet populations....
Giant planets can interact with multiple and chemically diverse environments in protoplanetary discs...
The C to O ratio is a crucial determinant of the chemical properties of planets. The recent observat...
Chemical compositions of giant planets provide a means to constrain how and where they form. Traditi...
Atmospheric chemical abundances of giant planets lead to important constraints on planetary formatio...
Recent observations of extrasolar gas giants suggest super-stellar C/O ratios in planetary atmospher...
The chemical composition of planetary atmospheres has long been thought to store information regardi...
To understand the role that planet formation history has on the observable atmospheric carbon-to-oxy...
Context. Direct observations of gaseous exoplanets reveal that their gas envelope has a higher C/O r...
Context. Direct observations of gaseous exoplanets reveal that their gas envelope has a higher C/O r...
Exoplanet surveys have identified a category of giant planets that orbit very close to their host st...
Relating planet formation to atmospheric composition has been a long standing goal of the astrophysi...
The composition of the protoplanetary disc is thought to be linked to the composition of the host st...
As stellar compositions evolve over time in the Milky Way, so will the resulting planet populations....
Giant planets can interact with multiple and chemically diverse environments in protoplanetary discs...
The C to O ratio is a crucial determinant of the chemical properties of planets. The recent observat...
Chemical compositions of giant planets provide a means to constrain how and where they form. Traditi...
Atmospheric chemical abundances of giant planets lead to important constraints on planetary formatio...
Recent observations of extrasolar gas giants suggest super-stellar C/O ratios in planetary atmospher...
The chemical composition of planetary atmospheres has long been thought to store information regardi...
To understand the role that planet formation history has on the observable atmospheric carbon-to-oxy...
Context. Direct observations of gaseous exoplanets reveal that their gas envelope has a higher C/O r...
Context. Direct observations of gaseous exoplanets reveal that their gas envelope has a higher C/O r...
Exoplanet surveys have identified a category of giant planets that orbit very close to their host st...
Relating planet formation to atmospheric composition has been a long standing goal of the astrophysi...
The composition of the protoplanetary disc is thought to be linked to the composition of the host st...
As stellar compositions evolve over time in the Milky Way, so will the resulting planet populations....
Giant planets can interact with multiple and chemically diverse environments in protoplanetary discs...
The C to O ratio is a crucial determinant of the chemical properties of planets. The recent observat...