Yukawa Unification in Heterotic String Theory

(2016)

Authors:

Evgeny I Buchbinder, Andrei Constantin, James Gray, Andre Lukas

Inclusive jet spectrum for small-radius jets

JOURNAL OF HIGH ENERGY PHYSICS (2016) ARTN 057

Authors:

Mrinal Dasgupta, Frederic A Dreyer, Gavin P Salam, Gregory Soyez

Hodge numbers for CICYs with symmetries of order divisible by 4

FORTSCHRITTE DER PHYSIK-PROGRESS OF PHYSICS 64:6-7 (2016) 463-509

Authors:

Philip Candelas, Andrei Constantin, Challenger Mishra

An all-sky search for three flavors of neutrinos from gamma-ray bursts with the IceCube Neutrino Observatory

Astrophysical Journal Institute of Physics 824:2 (2016) 115

Abstract:

We present the results and methodology of a search for neutrinos produced in the decay of charged pions created in interactions between protons and gamma-rays during the prompt emission of 807 gamma-ray bursts (GRBs) over the entire sky. This three-year search is the first in IceCube for shower-like Cherenkov light patterns from electron, muon, and tau neutrinos correlated with GRBs. We detect five low-significance events correlated with five GRBs. These events are consistent with the background expectation from atmospheric muons and neutrinos. The results of this search in combination with those of IceCube’s four years of searches for track-like Cherenkov light patterns from muon neutrinos correlated with Northern-Hemisphere GRBs produce limits that tightly constrain current models of neutrino and ultra high energy cosmic ray production in GRB fireballs.

High-energy neutrino follow-up search of gravitational wave event GW150914 with ANTARES and IceCube

Physical Review D American Physical Society 93:12 (2016) 122010

Abstract:

We present the high-energy-neutrino follow-up observations of the first gravitational wave transient GW150914 observed by the Advanced LIGO detectors on September 14, 2015. We search for coincident neutrino candidates within the data recorded by the IceCube and ANTARES neutrino detectors. A possible joint detection could be used in targeted electromagnetic follow-up observations, given the significantly better angular resolution of neutrino events compared to gravitational waves. We find no neutrino candidates in both temporal and spatial coincidence with the gravitational wave event. Within ±500 s of the gravitational wave event, the number of neutrino candidates detected by IceCube and ANTARES were three and zero, respectively. This is consistent with the expected atmospheric background, and none of the neutrino candidates were directionally coincident with GW150914. We use this nondetection to constrain neutrino emission from the gravitational-wave event.