Search for Quantum Gravity Using Astrophysical Neutrino Flavour with IceCube
arXiv:2111.04654 · doi:10.1038/s41567-022-01762-1
Abstract
Along their long propagation from production to detection, neutrino states undergo quantum interference which converts their types, or flavours. High-energy astrophysical neutrinos, first observed by the IceCube Neutrino Observatory, are known to propagate unperturbed over a billion light years in vacuum. These neutrinos act as the largest quantum interferometer and are sensitive to the smallest effects in vacuum due to new physics. Quantum gravity (QG) aims to describe gravity in a quantum mechanical framework, unifying matter, forces and space-time. QG effects are expected to appear at the ultra-high-energy scale known as the Planck energy, ~giga-electronvolts (GeV). Such a high-energy universe would have existed only right after the Big Bang and it is inaccessible by human technologies. On the other hand, it is speculated that the effects of QG may exist in our low-energy vacuum, but are suppressed by the Planck energy as (~GeV), (~GeV), or its higher powers. The coupling of particles to these effects is too small to measure in kinematic observables, but the phase shift of neutrino waves could cause observable flavour conversions. Here, we report the first result of neutrino interferometry~\cite{Aartsen:2017ibm} using astrophysical neutrino flavours to search for new space-time structure. We did not find any evidence of anomalous flavour conversion in IceCube astrophysical neutrino flavour data. We place the most stringent limits of any known technologies, down to ~GeV, on the dimension-six operators that parameterize the space-time defects for preferred astrophysical production scenarios. For the first time, we unambiguously reach the signal region of quantum-gravity-motivated physics.
The main text is 8 pages with 3 figures and 1 table. Final accepted version
References in corpus (28)
- MultiNest: an efficient and robust Bayesian inference tool for cosmology and particle physics
- Measurement of the rate of nu_e + d --> p + p + e^- interactions produced by 8B solar neutrinos at the Sudbury Neutrino Observatory
- Evidence for High-Energy Extraterrestrial Neutrinos at the IceCube Detector
- Data Tables for Lorentz and CPT Violation
- The fate of hints: updated global analysis of three-flavor neutrino oscillations
- Neutrino emission from the direction of the blazar TXS 0506+056 prior to the IceCube-170922A alert
- The IceCube Neutrino Observatory: Instrumentation and Online Systems
- Calculation of atmospheric neutrino flux using the interaction model calibrated with atmospheric muon data
- The IceCube high-energy starting event sample: Description and flux characterization with 7.5 years of data
- Neutrinos with Lorentz-violating operators of arbitrary dimension
- Fermions with Lorentz-violating operators of arbitrary dimension
- The high energy neutrino cross-section in the Standard Model and its uncertainty
- On Lorentz violation in Horava-Lifshitz type theories
- New Physics in Astrophysical Neutrino Flavor
- Perturbative charm production and the prompt atmospheric neutrino flux in light of RHIC and LHC
- Neutrino Interferometry for High-Precision Tests of Lorentz Symmetry with IceCube
- Testing Relativity with High-Energy Astrophysical Neutrinos
- In-vacuo-dispersion features for GRB neutrinos and photons
- Energy dependent neutrino flavor ratios from cosmic accelerators on the Hillas plot
- The Future of High-Energy Astrophysical Neutrino Flavor Measurements
- Astrophysical neutrinos flavored with Beyond the Standard Model physics
- Universe's Worth of Electrons to Probe Long-Range Interactions of High-Energy Astrophysical Neutrinos
- Flavor of cosmic neutrinos preserved by ultralight dark matter
- Limits on Neutrino Lorentz Violation from Multimessenger Observations of TXS 0506+056
- Lorentz violation from gamma-ray burst neutrinos
- Effects of a neutrino-dark energy coupling on oscillations of high-energy neutrinos
- LeptonInjector and LeptonWeighter: A neutrino event generator and weighter for neutrino observatories
- IceCube constraints on Violation of Equivalence Principle
Cited by in corpus (11)
- White Paper and Roadmap for Quantum Gravity Phenomenology in the Multi-Messenger Era
- Observation of Seven Astrophysical Tau Neutrino Candidates with IceCube
- Probing New Physics at Future Tau Neutrino Telescopes
- Ultra-light Dark Matter Search with Astrophysical Neutrino Flavour
- Two-detector flavor sensitivity to ultra-high-energy cosmic neutrinos
- Detecting High-Energy Neutrinos from Galactic Supernovae with ATLAS
- Neutrinos as possible probes for quantum gravity
- Muon accelerators -- Muon lifetime measurements as window to Planck scale physics
- Neutrino Lorentz invariance violation from the CPT-even SME coefficients through a tensor interaction with cosmological scalar fields
- Constraining the isotropic CPT-odd coefficients of the Standard Model Extension by a combined DUNE and ESSnuSB analysis
- Probing Lorentz invariance with a high-energy neutrino flare