PROJECTS

Projects: Projects, Project Ideas


Project Ideas

Neutrino Driven Wind
  1. By doing a literature search, determine three different types of neutrino spectra that are appropriate for neutrino driven wind conditions. Alter the reaction network to include neutrino interactions on free nucleons. Calculate an abundance pattern for a neutrino driven wind model with the three different types of spectra. Analyze the results and discuss what characteristics of the spectra lead to different outcomes.
Neutron Star Merger r-process
  1. Determine, using the literature, representative conditions for tidal ejection of material from neutron star mergers and for neutrino driven winds. Calculate, using the reaction network, abundance patterns for each and compare the results. Discuss why the patterns look different.
BBN:
Exploding a polytropic star
  1. Create a hydrostatic configuration for a polytropic star. Solutions can be derived from the Lane-Emden equation (Lane-Emden equation).
    1. Please look in the “Explode a Polytropic Star” folder in the Projects/Project Ideas folder in the Document Server for a python code that calculates the profile of a polytropic star.
  2. For an initial condition, increase the central pressure (and only the central point) by some factor of the hydrostatic value (just as in the Sedov Blast Wave).
  3. Evolve the star given this deposition of energy in the center of the star.
  4. Questions you can try to answer
Post-Processing nucleosynthesis
Numerics of Blast Waves
Reaction Sensitivity studies
Impact of Neutronization on supernova nucleosynthesis
hydro:
nuke network: