High Precision Abundances of the Old Solar Twin HIP 102152: Insights on Li Depletion from the Oldest Sun
TalaWanda R. Monroe, Jorge Mel\'endez, Iv\'an Ram\'irez, David Yong,, Maria Bergemann, Martin Asplund, Jacob Bean, Megan Bedell, Marcelo Tucci, Maia, Karin Lind, Alan Alves-Brito, Luca Casagrande, Matthieu Castro,, Jos\'e-Dias do Nascimento, Michael Bazot

TL;DR
This study provides a highly precise chemical abundance analysis of the old solar twin HIP 102152, revealing its similarity to the Sun and offering insights into lithium depletion and stellar aging.
Contribution
It presents the first detailed chemical abundance profile of HIP 102152 with unprecedented precision, comparing it to the Sun and younger solar twins to understand stellar evolution and planet hosting potential.
Findings
HIP 102152 has a near-solar metallicity and abundance pattern.
It has the lowest lithium abundance among solar twins, indicating age-related depletion.
HIP 102152's chemical pattern suggests it may host terrestrial planets.
Abstract
We present the first detailed chemical abundance analysis of the old 8.2 Gyr solar twin, HIP 102152. We derive differential abundances of 21 elements relative to the Sun with precisions as high as 0.004 dex (1%), using ultra high-resolution (R = 110,000), high S/N UVES spectra obtained on the 8.2-m Very Large Telescope. Our determined metallicity of HIP 102152 is [Fe/H] = -0.013 0.004. The atmospheric parameters of the star were determined to be 54 K cooler than the Sun, 0.09 dex lower in surface gravity, and a microturbulence identical to our derived solar value. Elemental abundance ratios examined vs. dust condensation temperature reveal a solar abundance pattern for this star, in contrast to most solar twins. The abundance pattern of HIP 02152 appears to be the most similar to solar of any known solar twin. Abundances of the younger, 2.9 Gyr solar twin, 18 Sco, were…
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