Systematic Light Propagation Bias from the Heliosphere and Its Impact on the Hubble Tension
arXiv:2607.07741 · doi:10.1142/S0217751X26501162
Abstract
The Hubble tension (HT) represents one of the most significant discrepancies in modern cosmology, with local distance measurements yielding km/s/Mpc while cosmic microwave background (CMB) observations predict km/s/Mpc. We propose that this tension arises from systematic effects introduced by our Solar System's heliospheric (HS) environment on local distance measurements. The HS creates a complex medium of heated plasma and energetic neutral atoms (ENAs) beyond the heliopause (HP), where interstellar medium (ISM) temperatures rise significantly. This thermal gradient and particle environment may systematically affect observations of Cepheid variables and Type Ia supernovae (SNe~Ia) used in the local cosmic distance ladder (CDL), biasing distance measurements and artificially inflating the measured Hubble constant. We present theoretical calculations showing how HS effects could account for up to of the observed 8--9\% discrepancy, with the realistic contribution lying in the -- range once anisotropy, partial calibration cancellation, and chromatic suppression are included, and discuss observational tests to validate this hypothesis.
24 pages, 7 captioned figures, published in IJMPA
References in corpus (13)
- A Comprehensive Measurement of the Local Value of the Hubble Constant with 1 km/s/Mpc Uncertainty from the Hubble Space Telescope and the SH0ES Team
- In the Realm of the Hubble tension a Review of Solutions
- Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM
- The Pantheon+ Analysis: Cosmological Constraints
- The Pantheon+ Analysis: The Full Dataset and Light-Curve Release
- Supernova Constraints and Systematic Uncertainties from the First 3 Years of the Supernova Legacy Survey
- The Olympics: A fair ranking of proposed models
- Comparing various multi-component global heliosphere models
- Gravitational Lensing Phenomena of Ellis-Bronnikov-Morris-Thorne Wormhole with Global Monopole and Cosmic String
- Probing the Lorentz Invariance Violation via Gravitational Lensing and Analytical Eigenmodes of Perturbed Slowly Rotating Bumblebee Black Holes
- Lorentz Symmetry Violation in Charged Black Hole Thermodynamics and Gravitational Lensing: Effects of the Kalb-Ramond Field
- An exact analytical solution for the interstellar magnetic field in the vicinity of the heliosphere
- Information Theoretical Approach to Detecting Quantum Gravitational Corrections