Abstract Long-lived particles are predicted in extensions of the Standard Model that involve relatively light but very weakly interacting sectors. In this paper we consider the possibility that some of these particles are produced in atmospheric cosmic ray showers, and their decay intercepted by neutrino detectors such as IceCube or Super-Kamiokande. We present the methodology and evaluate the sensitivity of these searches in various scenarios, including extensions with heavy neutral leptons in models of massive neutrinos, models with an extra U(1) gauge symmetry, and a combination of both in a U(1)B−L model. Our results are shown as a function of the production rate and the lifetime of the corresponding long-lived particles
Data collected with the surface detector array of the Pierre Auger Observatory during the period fro...
Sterile neutrinos are a well motivated facet of the new physics landscape. From their role in the me...
submitted to PRLIn this Letter we report on a search for long-lived particles that decay into final ...
Abstract Long-lived particles are predicted in extensions of t...
We investigate the possibility of detecting light long-lived particle (LLP) produced by high energy ...
Heavy neutral leptons are predicted in many extensions of the Standard Model with massive neutrinos....
Long-lived particles have significant enough lifetimes as to, when produced in collisions, leave a d...
With the observation of high-energy astrophysical neutrinos by the IceCube Neutrino Observatory, int...
The detection of astrophysical neutrinos, certainly a break-through result, introduced new experimen...
AbstractWe analyze the 37 high energy neutrino candidates reported by the IceCube collaboration afte...
In this essay, we discuss the possibilities and associated challenges concerning beyond the Standard...
Motivated by the recent IceCube result, we study high energy cosmic-ray neutrino flux from the decay...
This talk is mainly based on our previous work.(1) We will investigate the possibility of detecting ...
Data collected with the surface detector array of the Pierre Auger Observatory during the period fro...
Sterile neutrinos are a well motivated facet of the new physics landscape. From their role in the me...
submitted to PRLIn this Letter we report on a search for long-lived particles that decay into final ...
Abstract Long-lived particles are predicted in extensions of t...
We investigate the possibility of detecting light long-lived particle (LLP) produced by high energy ...
Heavy neutral leptons are predicted in many extensions of the Standard Model with massive neutrinos....
Long-lived particles have significant enough lifetimes as to, when produced in collisions, leave a d...
With the observation of high-energy astrophysical neutrinos by the IceCube Neutrino Observatory, int...
The detection of astrophysical neutrinos, certainly a break-through result, introduced new experimen...
AbstractWe analyze the 37 high energy neutrino candidates reported by the IceCube collaboration afte...
In this essay, we discuss the possibilities and associated challenges concerning beyond the Standard...
Motivated by the recent IceCube result, we study high energy cosmic-ray neutrino flux from the decay...
This talk is mainly based on our previous work.(1) We will investigate the possibility of detecting ...
Data collected with the surface detector array of the Pierre Auger Observatory during the period fro...
Sterile neutrinos are a well motivated facet of the new physics landscape. From their role in the me...
submitted to PRLIn this Letter we report on a search for long-lived particles that decay into final ...