English

Revisiting the $A_L$ Lensing Anomaly in Planck 2018 Temperature Data

Cosmology and Nongalactic Astrophysics 2024-10-29 v2

Abstract

We revisit the lensing anomaly in the Planck 2018 temperature (TT) data and examine its robustness to frequency selection and additional sky masking. Our main findings are: (1) The phenomenological lensing amplitude parameter, ALA_L, varies with ecliptic latitude, with a 2.9σ2.9\sigma preference for AL>1A_L>1 near the ecliptic, and 1.0σ1.0\sigma preference near the ecliptic poles, compared to 2.5σ2.5\sigma on the original masks. This behavior is largely or solely from 217 GHz and suggestive of some non-random effect given the Planck scan strategy. (2) The 217 GHz TT data also show a stronger preference for AL>1A_L>1 than the lower frequencies. The shifts in ALA_L from 217 GHz with additional Galactic dust masking are too large to be explained solely by statistical fluctuations, indicating some connection with the foreground treatment. Overall, the Planck ALA_L anomaly does not have a single simple cause. Removing the 217 GHz TT data leaves a 1.8σ1.8\sigma preference for AL>1A_L>1. The low-multipole (<30\ell<30) TT data contribute to the preference for AL>1A_L>1 through correlations with Λ\LambdaCDM parameters. The 100 and 143 GHz data at 30\ell\geq30 prefer AL>1A_L>1 at 1.3σ1.3\sigma, and this appears robust to the masking tests we performed. The lensing anomaly may impact fits to alternative cosmological models. Marginalizing over ALA_L, optionally applied only to Planck TT spectra, can check this. Models proposed to address cosmological tensions should be robust to removal of the Planck 217 GHz TT data.

Keywords

Cite

@article{arxiv.2310.03127,
  title  = {Revisiting the $A_L$ Lensing Anomaly in Planck 2018 Temperature Data},
  author = {Graeme E. Addison and Charles L. Bennett and Mark Halpern and Gary Hinshaw and Janet L. Weiland},
  journal= {arXiv preprint arXiv:2310.03127},
  year   = {2024}
}

Comments

27 pages, 10 figures, updated to match version accepted by ApJ

R2 v1 2026-06-28T12:40:51.707Z