Abstract
We perform hydrodynamical and nucleosynthesis calculations of core-collapse supernovae (SNe) and hypernovae (HNe) of Population (Pop) III stars. We provide new yields for the main-sequence mass of $M_{\rm MS}=13-50$ $M_{\odot}$ and the explosion energy of $E=1-40\times10^{51}$ ergs to apply for chemical evolution studies. Our HN yields based on the mixing-fallback model of explosions reproduce the observed abundance patterns of extremely metal-poor (EMP) stars ($-4 < -3$), while those of very metal-poor (VMP) stars ($-3 < -3$, but can be reproduced by the ``inhomogeneous'' chemical evolution model. In addition, we examine how the modifications of the distributions of the electron mole fraction $Y_{\rm e}$ and the density in the presupernova models improve the agreement with observations. In this connection, we discuss possible contributions of nucleosynthesis in the neutrino-driven wind and the accretion disk.
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CITATION STYLE
Tominaga, N., Umeda, H., & Nomoto, K. (2007). Supernova Nucleosynthesis in Population III 13–50 M ⊙ Stars and Abundance Patterns of Extremely Metal‐poor Stars. The Astrophysical Journal, 660(1), 516–540. https://doi.org/10.1086/513063
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