papers

Publications (11)

astro-ph.SR2019

Presolar Silicon Carbide Grains of Types Y and Z: Their Molybdenum Isotopic Compositions and Stellar Origins

Nan Liu, Thomas Stephan, Sergio Cristallo +8

We report Mo isotopic compositions of 37 presolar SiC grains of types Y (19) and Z (18), rare types commonly argued to have formed in lower-than-solar metallicity asymptotic giant…

astro-ph.SR2019

Fe in core-collapse supernovae and prospects for X-ray and -ray detection in supernova remnants

Samuel Jones, Heiko Moeller, Chris L. Fryer +6

We investigate Fe in massive stars and core-collapse supernovae focussing on uncertainties that influence its production in 15, 20 and 25 stars at solar metallicit…

astro-ph.SR2018

Common Occurrence of Explosive Hydrogen Burning in Type II Supernovae

Nan Liu, Thomas Stephan, Patrick Boehnke +6

We report Mo isotopic data for 16 15N-rich presolar SiC grains of type AB (14N/15N<solar, AB1) and their correlated Sr and Ba isotope ratios when available. Eight of the 16 AB1 gra…

hep-ex2022

Dark-matter And Neutrino Computation Explored (DANCE) Community Input to Snowmass

Amy Roberts, Christopher Tunnell, Belina von Krosigk +23

This paper summarizes the needs of the dark matter and neutrino communities as it relates to computation. The scope includes data acquisition, triggers, data management and process…

astro-ph.SR2024

Silicon Isotopic Composition of Mainstream Presolar SiC Grains Revisited: The Impact of Nuclear Reaction Rate Uncertainties

Hung Kwan Fok, Marco Pignatari, Benoît Côté +1

Presolar grains are stardust particles that condensed in the ejecta or in the outflows of dying stars and can today be extracted from meteorites. They recorded the nucleosynthetic…

astro-ph.SR2020

Origin of large meteoritic SiC stardust grains in metal-rich AGB stars

Maria Lugaro, Borbála Cseh, Blanka Világos +16

Stardust grains that originated in ancient stars and supernovae are recovered from meteorites and carry the detailed composition of their astronomical sites of origin. We present e…

astro-ph.SR2026

Stellar Interpretation of Meteoritic Data and PLotting for Everyone (SIMPLE): Isotope Mixing Lines for Six Sets of Core-Collapse Supernova Models

Marco Pignatari, Mattias Ek, Georgy V. Makhatadze +15

Bulk meteorites and their inclusions exhibit, for many chemical elements, isotopic variability produced by nucleosynthetic events in stars and supernovae before the formation of th…

astro-ph.SR2018

New constraints on the major neutron source in low-mass AGB stars

Nan Liu, Roberto Gallino, Sergio Cristallo +4

We compare updated Torino postprocessing asymptotic giant branch (AGB) nucleosynthesis model calculations with isotopic compositions of mainstream SiC dust grains from low-mass AGB…

astro-ph.SR2017

J-type carbon stars: A dominant source of 14N-rich presolar SiC grains of type AB

Nan Liu, Thomas Stephan, Patrick Boehnke +6

We report Mo isotopic data of 27 new presolar SiC grains, including 12 14N-rich AB (14N/15N>440, AB2) and 15 mainstream (MS) grains, and their correlated Sr and Ba isotope ratios w…

astro-ph.SR2014

MESA and NuGrid simulations of classical novae: CO and ONe nova nucleosynthesis

Pavel A. Denissenkov, James W. Truran, Marco Pignatari +6

Classical novae are the result of thermonuclear flashes of hydrogen accreted by CO or ONe white dwarfs, leading eventually to the dynamic ejection of the surface layers. These are…

astro-ph.SR2019

NuGrid stellar data set - III. Updated low-mass AGB models and s-process nucleosynthesis with metallicities Z=0.01, Z=0.02 and Z=0.03

Umberto Battino, Ashley Tattersall, Claudia Lederer-Woods +6

The production of the neutron-capture isotopes beyond iron that we observe today in the solar system is the result of the combined contribution of the r-process, the s- process and…