62 research outputs found

    A COMPREHENSIVE FORENSIC CASE REPORT WITH THE UNIVERSITY OF MONTANA FORENSIC ANTHROPOLOGY LAB UNIVERSITY OF MONTANA FORENSIC CASE #167

    Get PDF
    This report consists of an inventory of the skeletal remains of case# 167, assessment of the minimum number of individuals (MNI), a biological profile if possible, and a literature review of the assessment and understanding of ballistic trauma. The skeletal remains are consistent with an MNI of one. The remains are likely from a male individual, and skeletal features are representative of a person of Caucasian ancestry. The individual is estimated to be between of 35-65 years old with an estimated stature of between 5’5” and 5’9”

    Towards Equitable, Diverse, and Inclusive science collaborations: The Multimessenger Diversity Network

    Get PDF

    Testing the AGN Radio and Neutrino correlation using the MOJAVE catalog and 10 years of IceCube Data

    Get PDF

    Observation of Cosmic Ray Anisotropy with Nine Years of IceCube Data

    Get PDF

    Searching for time-dependent high-energy neutrino emission from X-ray binaries with IceCube

    Get PDF

    A time-independent search for neutrinos from galaxy clusters with IceCube

    Get PDF

    Completing Aganta Kairos: Capturing Metaphysical Time on the Seventh Continent

    Get PDF

    The Acoustic Module for the IceCube Upgrade

    Get PDF

    A Combined Fit of the Diffuse Neutrino Spectrum using IceCube Muon Tracks and Cascades

    Get PDF

    Non-standard neutrino interactions in IceCube

    Get PDF
    Non-standard neutrino interactions (NSI) may arise in various types of new physics. Their existence would change the potential that atmospheric neutrinos encounter when traversing Earth matter and hence alter their oscillation behavior. This imprint on coherent neutrino forward scattering can be probed using high-statistics neutrino experiments such as IceCube and its low-energy extension, DeepCore. Both provide extensive data samples that include all neutrino flavors, with oscillation baselines between tens of kilometers and the diameter of the Earth. DeepCore event energies reach from a few GeV up to the order of 100 GeV - which marks the lower threshold for higher energy IceCube atmospheric samples, ranging up to 10 TeV. In DeepCore data, the large sample size and energy range allow us to consider not only flavor-violating and flavor-nonuniversal NSI in the μ−τ sector, but also those involving electron flavor. The effective parameterization used in our analyses is independent of the underlying model and the new physics mass scale. In this way, competitive limits on several NSI parameters have been set in the past. The 8 years of data available now result in significantly improved sensitivities. This improvement stems not only from the increase in statistics but also from substantial improvement in the treatment of systematic uncertainties, background rejection and event reconstruction
    corecore