A Cross-Correlation Study of High-energy Neutrinos and Tracers of Large-Scale Structure
arXiv:2002.06234 · doi:10.3847/1538-4357/ab8561
Abstract
The origin of the bulk of the astrophysical neutrinos detected by the IceCube Observatory remains a mystery. Previous source-finding analyses compare the directions of IceCube events and individual sources in astrophysical catalogs. The source association method is technically challenging when the number of source candidates is much larger than the number of the observed astrophysical neutrinos. We show that in this large source number regime, a cross-correlation analysis of neutrino data and source catalog can instead be used to constrain potential source populations for the high-energy astrophysical neutrinos, and provide spatial evidence for the existence of astrophysical neutrinos. We present an analysis of the cross-correlation of the IceCube 2010-2012 point-source data and a WISE-2MASS galaxy sample. While we find no significant detection of cross-correlation with the publicly available neutrino dataset, we show that, when applied to the full IceCube data, which has a longer observation time and higher astrophysical neutrino purity, our method has sufficient statistical power to detect a cross-correlation signal if the neutrino sources trace the Large Scale Structure of the Universe.
10 pages, 6 figures. Comments welcome
References in corpus (12)
- Galaxy Clusters Discovered via the Sunyaev-Zel'dovich Effect in the 2500-square-degree SPT-SZ survey
- Observation and Characterization of a Cosmic Muon Neutrino Flux from the Northern Hemisphere using six years of IceCube data
- Calculation of atmospheric neutrino flux using the interaction model calibrated with atmospheric muon data
- Time-integrated Neutrino Source Searches with 10 years of IceCube Data
- All-sky search for time-integrated neutrino emission from astrophysical sources with 7 years of IceCube data
- Atmospheric and Astrophysical Neutrinos above 1 TeV Interacting in IceCube
- The contribution of Fermi-2LAC blazars to the diffuse TeV-PeV neutrino flux
- Star-forming galaxies as the origin of diffuse high-energy backgrounds: Gamma-ray and neutrino connections, and implications for starburst history
- SPIDERS: the spectroscopic follow-up of X-ray selected clusters of galaxies in SDSS-IV
- Identifying Ultrahigh-Energy Cosmic-Ray Accelerators with Future Ultrahigh-Energy Neutrino Detectors
- Detection prospects for high energy neutrino sources from the anisotropic matter distribution in the local universe
- The ALHAMBRA survey : band luminosity function of quiescent and star-forming galaxies at by PDF analysis
Cited by in corpus (16)
- CLASS_GWB: robust modeling of the astrophysical gravitational wave background anisotropies
- Tau Neutrinos in the Next Decade: from GeV to EeV
- Cosmological cross-correlations and nearest neighbor distributions
- Exploring galaxies-gravitational waves cross-correlations as an astrophysical probe
- Beware of commonly used approximations I: errors in forecasts
- Constraints on the models of the origin of high-energy astrophysical neutrinos
- Gravitational waves HI intensity mapping: cosmological and astrophysical applications
- Follow-up of astrophysical transients in real time with the IceCube Neutrino Observatory
- Using High-Energy Neutrinos As Cosmic Magnetometers
- Revealing the Local Cosmic Web from Galaxies by Deep Learning
- Testing gravity with gravitational waves electromagnetic probes cross-correlations
- Detecting ultra-high energy cosmic ray anisotropies through cross-correlations
- A Cross-correlation Study between IceCube Neutrino Events and the Fermi Unresolved Gamma-ray Sky
- High-energy Neutrino Source Cross-correlations with Nearest-neighbor Distributions
- Cross-correlating IceCube neutrinos with a large set of galaxy samples around redshift z ~ 1
- Seeking Neutrino Emission from AGN through Temporal and Spatial Cross Correlation