activity
20132020
most citedThe Elemental Abundances (with Uncertainties) of the Most Earth-like Planet

111 citations · 131 across the 2 of their papers we have counts for

collaborators

5 papers

astro-ph.EP2020

A Global Fireball Observatory

H. A. R. Devillepoix, M. Cupák, P. A. Bland +46

The world's meteorite collections contain a very rich picture of what the early Solar System would have been made of, however the lack of spatial context with respect to their pare…

astro-ph.EP2018

The Volatility Trend of Protosolar and Terrestrial Elemental Abundances

Haiyang S. Wang, Charles H. Lineweaver, Trevor R. Ireland

We present new estimates of protosolar elemental abundances based on an improved combination of solar photospheric abundances and CI chondritic abundances. These new estimates indi…

astro-ph.EP2018

Enhanced constraints on the interior composition and structure of terrestrial exoplanets

Haiyang S. Wang, Fan Liu, Trevor R. Ireland +3

Exoplanet interior modelling usually makes the assumption that the elemental abundances of a planet are identical to those of its host star. Host stellar abundances are good proxie…

astro-ph.EP2017111 cited

The Elemental Abundances (with Uncertainties) of the Most Earth-like Planet

Haiyang S. Wang, Charles H. Lineweaver, Trevor R. Ireland

To first order, the Earth as well as other rocky planets in the Solar System and rocky exoplanets orbiting other stars, are refractory pieces of the stellar nebula out of which the…

astro-ph.SR201320 cited

Europium s-process signature at close-to-solar metallicity in stardust SiC grains from AGB stars

Janaina N. Avila, Trevor R. Ireland, Maria Lugaro +5

Individual mainstream stardust silicon carbide (SiC) grains and a SiC-enriched bulk sample from the Murchison carbonaceous meteorite have been analyzed by the Sensitive High Resolu…