Testing Weak Equivalence Principle with IceCube Event and Blazar

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Wang, Tian-Cong, Kurpas, Aleksandra Piorkowska -, Biesiada, Marek, Gao, He
Format: Preprint
Published: 2026
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915943561560064
author Wang, Tian-Cong
Kurpas, Aleksandra Piorkowska -
Biesiada, Marek
Gao, He
author_facet Wang, Tian-Cong
Kurpas, Aleksandra Piorkowska -
Biesiada, Marek
Gao, He
contents Einstein's Weak Equivalence Principle (WEP), the universality of free fall, is a fundamental component of general relativity and other metric theories of gravity. Its validity can be tested through the post-Newtonian parameter gamma, which quantifies the amount of spacetime curvature due to the presence of unit rest mass. In this paper, we use high-energy neutrino events detected by IceCube and associated with the gamma-ray blazars TXS 0506+056 and PKS 0735+178 to test the WEP via the Shapiro delay induced by the gravitational potential of Laniakea. We find that violation of the equivalence principle for neutrinos and photons is limited to an accuracy of 10^-6, 10^-7 and 10^-8, representing improvements of one, two, and three orders of magnitude, respectively, over previous constraints obtained from other high-energy neutrino-blazar associations and up to six orders of magnitude tighter compared to the constraints obtained with MeV neutrinos from SN1987A.
format Preprint
id arxiv_https___arxiv_org_abs_2604_16920
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Testing Weak Equivalence Principle with IceCube Event and Blazar
Wang, Tian-Cong
Kurpas, Aleksandra Piorkowska -
Biesiada, Marek
Gao, He
High Energy Astrophysical Phenomena
Einstein's Weak Equivalence Principle (WEP), the universality of free fall, is a fundamental component of general relativity and other metric theories of gravity. Its validity can be tested through the post-Newtonian parameter gamma, which quantifies the amount of spacetime curvature due to the presence of unit rest mass. In this paper, we use high-energy neutrino events detected by IceCube and associated with the gamma-ray blazars TXS 0506+056 and PKS 0735+178 to test the WEP via the Shapiro delay induced by the gravitational potential of Laniakea. We find that violation of the equivalence principle for neutrinos and photons is limited to an accuracy of 10^-6, 10^-7 and 10^-8, representing improvements of one, two, and three orders of magnitude, respectively, over previous constraints obtained from other high-energy neutrino-blazar associations and up to six orders of magnitude tighter compared to the constraints obtained with MeV neutrinos from SN1987A.
title Testing Weak Equivalence Principle with IceCube Event and Blazar
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2604.16920