Relativistic Mean Field Study of Neutron Stars and Hyperon Stars

2021
212 pages
Supervisor:
Thesis: PhD
  • Aligarh Muslim University, Department of Physics, India,
  • Aligarh Muslim U.
(2021)
  • Published: 2021
e-Print:
URN/HDL:

Citations per year

20222023202401
Abstract: (arXiv)
This thesis focuses on a variety of active research topics, such as nuclear matter, neutron stars, and phase transition within the framework of the RMF model. We use the previously successful effective field theory-driven Relativistic Mean Field (RMF) and density-dependent RMF (DD-RMF)formalisms for analyzing hadron matter to examine the infinite nuclear matter and neutron stars. The presence of exotic phases such as quarks has been investigated using the MIT Bag model and its variants, such as the vBag model, at various bag constants. The other exotic phases, such as hyperons, have also been studied under the influence of a strong magnetic field.
Note:
  • PhD Thesis
  • Physical Sciences
  • Physics
  • Physics Atomic Molecular and Chemical
  • magnetic field: high
  • hyperon: star
  • hadron: matter
  • quark: matter
  • neutron star
  • nuclear matter
  • critical phenomena