Neutrino interactions with matter play an important role in determining the nucleosynthesis outcome in explosive astrophysical environments such as core-collapse supernovae or mergers of compact objects. In this article, we first discuss our recent work on the importance of studying the time evolution of collective neutrino oscillations among active flavors in determining their effects on nucleosynthesis. We then consider the possible active-sterile neutrino mixing and demonstrate the need of a consistent approach to evolve neutrino flavor oscillations, matter composition, and the hydrodynamics when flavor oscillations can happen very deep inside the supernovae
We examine simulations of core-collapse supernovae in spherical symmetry. Our model is based on gene...
Neutrinos play an important role in core-collapse supernova events since they are a key piece to und...
We argue that the small fraction of neutrinos that undergo direction-changing scattering outside of ...
Neutrino interactions with matter play an important role in determining the nucleosynthesis outcome ...
We review the rich phenomena associated with neutrino flavor transformation in the presence of neutr...
We examine coherent active-active channel neutrino flavor evolution in environments where neutrino-n...
Neutrinos have shaped cosmic history in important ways. In early epochs, they left their mark on the...
AbstractNeutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early un...
Neutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early universe i...
We study the effect of nonvanishing masses and mixings among neutrino flavors on the detection of ne...
The νp process is a primary nucleosynthesis process which occurs in core-collapse supernovae. An ess...
We can understand many recently discovered features of flavor evolution in dense, self-coupled super...
The topic of this thesis is the study of the neutrino flavor conversions in high-density environment...
Core collapse supernovae are unique laboratories to study many aspects of neutrino physics. The vici...
We study the effect of non-vanishing masses and mixings among neutrino flavors on the detection of n...
We examine simulations of core-collapse supernovae in spherical symmetry. Our model is based on gene...
Neutrinos play an important role in core-collapse supernova events since they are a key piece to und...
We argue that the small fraction of neutrinos that undergo direction-changing scattering outside of ...
Neutrino interactions with matter play an important role in determining the nucleosynthesis outcome ...
We review the rich phenomena associated with neutrino flavor transformation in the presence of neutr...
We examine coherent active-active channel neutrino flavor evolution in environments where neutrino-n...
Neutrinos have shaped cosmic history in important ways. In early epochs, they left their mark on the...
AbstractNeutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early un...
Neutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early universe i...
We study the effect of nonvanishing masses and mixings among neutrino flavors on the detection of ne...
The νp process is a primary nucleosynthesis process which occurs in core-collapse supernovae. An ess...
We can understand many recently discovered features of flavor evolution in dense, self-coupled super...
The topic of this thesis is the study of the neutrino flavor conversions in high-density environment...
Core collapse supernovae are unique laboratories to study many aspects of neutrino physics. The vici...
We study the effect of non-vanishing masses and mixings among neutrino flavors on the detection of n...
We examine simulations of core-collapse supernovae in spherical symmetry. Our model is based on gene...
Neutrinos play an important role in core-collapse supernova events since they are a key piece to und...
We argue that the small fraction of neutrinos that undergo direction-changing scattering outside of ...