Bibcode
Israelian, Garik; Delgado Mena, Elisa; Santos, Nuno C.; Sousa, Sergio G.; Mayor, Michel; Udry, Stephane; Domínguez Cerdeña, Carolina; Rebolo, Rafael; Randich, Sofia
Bibliographical reference
Nature, Volume 462, Issue 7270, pp. 189-191 (2009).
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11
2009
Journal
Citations
133
Refereed citations
106
Description
The surface abundance of lithium on the Sun is 140 times less than the
protosolar value, yet the temperature at the base of the surface
convective zone is not hot enough to burn-and hence deplete-Li (refs 2,
3). A large range of Li abundances is observed in solar-type stars of
the same age, mass and metallicity as the Sun, but such a range is
theoretically difficult to understand. An earlier suggestion that Li is
more depleted in stars with planets was weakened by the lack of a proper
comparison sample of stars without detected planets. Here we report Li
abundances for an unbiased sample of solar-analogue stars with and
without detected planets. We find that the planet-bearing stars have
less than one per cent of the primordial Li abundance, while about 50
per cent of the solar analogues without detected planets have on average
ten times more Li. The presence of planets may increase the amount of
mixing and deepen the convective zone to such an extent that the Li can
be burned.
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