English

Agnostic cosmology in the CAMEL framework

Cosmology and Nongalactic Astrophysics 2016-07-12 v1

Abstract

Cosmological parameter estimation is traditionally performed in the Bayesian context. By adopting an "agnostic" statistical point of view, we show the interest of confronting the Bayesian results to a frequentist approach based on profile-likelihoods. To this purpose, we have developed the Cosmological Analysis with a Minuit Exploration of the Likelihood ("CAMEL") software. Written from scratch in pure C++, emphasis was put in building a clean and carefully-designed project where new data and/or cosmological computations can be easily included. CAMEL incorporates the latest cosmological likelihoods and gives access from the very same input file to several estimation methods: (i) A high quality Maximum Likelihood Estimate (a.k.a "best fit") using MINUIT ; (ii) profile likelihoods, (iii) a new implementation of an Adaptive Metropolis MCMC algorithm that relieves the burden of reconstructing the proposal distribution. We present here those various statistical techniques and roll out a full use-case that can then used as a tutorial. We revisit the Λ\LambdaCDM parameters determination with the latest Planck data and give results with both methodologies. Furthermore, by comparing the Bayesian and frequentist approaches, we discuss a "likelihood volume effect" that affects the optical reionization depth when analyzing the high multipoles part of the Planck data. The software, used in several Planck data analyzes, is available from http://camel.in2p3.fr. Using it does not require advanced C++ skills.

Keywords

Cite

@article{arxiv.1607.02964,
  title  = {Agnostic cosmology in the CAMEL framework},
  author = {S. Henrot-Versillé and O. Perdereau and S. Plaszczynski and B. Rouillé d'Orfeuil and M. Spinelli and M. Tristram},
  journal= {arXiv preprint arXiv:1607.02964},
  year   = {2016}
}

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Typeset in Authorea. Online version available at: https://www.authorea.com/users/90225/articles/104431/_show_article

R2 v1 2026-06-22T14:51:06.078Z