We propose that the intense neutrino flux emitted by the core of a supernova generates parametric decay instabilities (neutrinos generate plasma waves and lower energy neutrinos) in the surrounding stellar envelope. The process is analogous to the stimulated Raman instability associated with the interaction of intense light with plasma. We develop a theory for the instability based on the index of refraction of neutrinos. Our results indicate that the instability is important and should play a role in supernova dynamics
Neutrino-neutrino scattering could have a large secret component that would turn neutrinos within a...
We study the physics of core-collapse supernovae and the neutron stars they create. We study the mic...
We carry out a detailed analysis of the supernova (SN) neutrino flavor evolution during the accretio...
A new interaction mechanism is described between neutrinos and dense plasmas. With the unification o...
There is considerable interest in the propagation dynamics of intense neutrino beams in a background...
A survey of the theory of neutrino oscillations in dense matter and neutrino backgrounds is present...
The theoretical framework for the study of nonlinear neutrino–plasma interactions is presented. The ...
I shall review some of the recent results concerning the astrophysics of a core collapse supernova (...
The collective interaction of electron neutrinos with a dense non-stationary plasma is described her...
We present the first calculations with three flavors of collective and shock wave effects for neutri...
There is considerable interest in the propagation dynamics of intense electron and photon neutrino b...
The nonlinear coupling between intense neutrino fluxes and a dense magnetized plasma is considered. ...
We consider the scattering of neutrinos and gravitational waves produced in supernovae (SN) explosio...
We study the effect of non-standard neutrino interactions (NSIs) on the growth of instabilities in n...
We investigate the nuclear abundances uniquely produced from the neutrino neutrino-process in super-...
Neutrino-neutrino scattering could have a large secret component that would turn neutrinos within a...
We study the physics of core-collapse supernovae and the neutron stars they create. We study the mic...
We carry out a detailed analysis of the supernova (SN) neutrino flavor evolution during the accretio...
A new interaction mechanism is described between neutrinos and dense plasmas. With the unification o...
There is considerable interest in the propagation dynamics of intense neutrino beams in a background...
A survey of the theory of neutrino oscillations in dense matter and neutrino backgrounds is present...
The theoretical framework for the study of nonlinear neutrino–plasma interactions is presented. The ...
I shall review some of the recent results concerning the astrophysics of a core collapse supernova (...
The collective interaction of electron neutrinos with a dense non-stationary plasma is described her...
We present the first calculations with three flavors of collective and shock wave effects for neutri...
There is considerable interest in the propagation dynamics of intense electron and photon neutrino b...
The nonlinear coupling between intense neutrino fluxes and a dense magnetized plasma is considered. ...
We consider the scattering of neutrinos and gravitational waves produced in supernovae (SN) explosio...
We study the effect of non-standard neutrino interactions (NSIs) on the growth of instabilities in n...
We investigate the nuclear abundances uniquely produced from the neutrino neutrino-process in super-...
Neutrino-neutrino scattering could have a large secret component that would turn neutrinos within a...
We study the physics of core-collapse supernovae and the neutron stars they create. We study the mic...
We carry out a detailed analysis of the supernova (SN) neutrino flavor evolution during the accretio...