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20242026
most citedMagnesium isotope ratios in Milky Way and dwarf galaxy stars

5 citations · 5 across the 1 of their papers we have counts for

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10 papers

astro-ph.GA20265 cited

Magnesium isotope ratios in Milky Way and dwarf galaxy stars

M. McKenzie, S. Monty, D. Yong +8

The paper measures magnesium isotope ratios in stars from dwarf galaxies and the Milky Way, finding distinct patterns at fixed iron abundance but similar ratios at fixed magnesium…

astro-ph.SR2026

SCATTER Common Envelope Formalism for Triples

Rosanne Di Stefano, Amaan Khwaja, Chiaki Kobayashi

Many stars are components of triple-star systems, or of higher-order multiples. In such systems mass transfer is common, and when the transfer is dynamically unstable, a common env…

astro-ph.SR2025

Using Binary Population Synthesis to Calculate the Yields of Low- and Intermediate-Mass Binary Populations at Low Metallicity

Zara Osborn, Amanda Karakas, Devika Kamath +3

Asymptotic giant branch (AGB) stars are important to chemical evolution at metallicity () as they contribute significantly to the produc…

astro-ph.SR2025

Potassium abundances in extremely metal poor stars: Implications for nucleosynthesis in the final stages of massive star evolution

M. N. Ishigaki, N. Tominaga, W. Aoki +5

We present a potassium (K) abundance analysis in extremely metal-poor (EMP) stars based on high-resolution () spectra obtained with the High Dispersion Spectrograph on…

astro-ph.GA2025

The aluminium-26 distribution in a cosmological simulation of a Milky Way-type Galaxy

B. Wehmeyer, C. Kobayashi, A. Yagüe López +1

Context. The 1.8 MeV gamma-rays corresponding to the decay of the radioactive isotope Al-26 (with a half-life of 0.72 Myr) have been observed by the SPI detector on the INTEGRAL sp…

astro-ph.GA2025

Population III Supernovae as a dust factory I --- molecule formation and mixing/fallback in ejecta

Gen Chiaki, Takaya Nozawa, Chiaki Kobayashi +1

Recent observations have revealed the spectral feature of carbonaceous grains even in a very distant galaxy. We develop a state-of-the-art dust synthesis code by self-consistently…