Angular Dependence of Neutrino Flux in KM3 Detectors in Low Scale Gravity Models
arXiv:hep-ph/0205052 · doi:10.1103/PhysRevD.66.065018
Abstract
Cubic kilometer neutrino telescopes are capable of probing fundamental questions of ultra-high energy neutrino interactions. There is currently great interest in neutrino interactions caused by low-scale, extra dimension models. Above 1 PeV the cross section in low scale gravity models rises well above the total Standard Model cross section. We assess the observability of this effect in the 1 PeV - 100 PeV energy range of kilometer-scale detectors with several new points of emphasis that hinge on enhanced neutral current cross sections. A major point is the importance of ``feed-down'' regeneration of upward neutrino flux, driven by new-physics neutral current interactions in the flux evolution equations. Feed-down is far from negligible, and it is essential to include its effect. We then find that the angular distribution of events has high discriminating value in separating models. In particular the ``up-to-down'' ratio between upward and downward-moving neutrino fluxes is a practical diagnostic tool which can discriminate between models in the near future. The slope of the angular distribution, in the region of maximum detected flux, is also substantially different in low-scale gravity and the Standard Model. These observables are only weakly dependent on astrophysical flux uncertainties. We conclude that angular distributions can reveal a breakdown of the Standard Model and probe the new physics beyond, as soon as data become available.
25 pages, 6 figures, discussion of calculations expanded, references added
References in corpus (9)
- Black Holes from Cosmic Rays: Probes of Extra Dimensions and New Limits on TeV-Scale Gravity
- Collider versus Cosmic Ray Sensitivity to Black Hole Production
- Transplanckian Collisions at the LHC and Beyond
- Experimental Signature for Black Hole Production in Neutrino Air Showers
- Detecting Microscopic Black Holes with Neutrino Telescopes
- Black Holes at Neutrino Telescopes
- Enhanced signal of astrophysical tau neutrinos propagating through Earth
- Black Hole Production at the LHC: Effects of Voloshin Suppression
- BAIKAL experiment: status report
Cited by in corpus (19)
- RICE Limits on the Diffuse Ultra-High Energy Neutrino Flux
- Theoretically palatable flavor combinations of astrophysical neutrinos
- Lorentz and CPT Invariance Violation In High-Energy Neutrinos
- Neutrino Bounds on Astrophysical Sources and New Physics
- Limits on the Ultra-High Energy Electron Neutrino Flux from the RICE Experiment
- Updated Limits on TeV-Scale Gravity from Absence of Neutrino Cosmic Ray Showers Mediated by Black Holes
- High Energy Physics in the Atmosphere: Phenomenology of Cosmic Ray Air Showers
- Probing New Physics at Future Tau Neutrino Telescopes
- The Particle Physics Reach of High-Energy Neutrino Astronomy
- Signatures of microscopic black holes and extra dimensions at future neutrino telescopes
- Energy and Angular Distribution of Upward UHE Neutrinos and Signals of Low Scale Gravity: Role of Tau Decay
- Leptoquarks signals in KM neutrino telescopes
- Upward shower rates at neutrino telescopes directly determine the neutrino flux
- Bounds on Low Scale Gravity from RICE data and Cosmogenic Neutrino Flux Models
- Probing Quantum Gravity with Elastic Interactions of Ultra-High-Energy Neutrinos
- New Physics with IceCube
- Eikonal contributions to ultra high energy neutrino-nucleon cross sections in low scale gravity models
- Unparticle effects in neutrino telescopes
- Effects of Majorana Physics on the UHE Flux Traversing the Earth