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September 26, 2002Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields170 citationsOpen Access

Efficient cosmological parameter estimation from microwave background anisotropies

AKArthur KosowskyMMMiloš MilosavljevićRJRaúl Jiménez

Key Points

  • The study aims to improve the estimation of cosmological parameters from the cosmic microwave background power spectrum.
  • Reviewed physical quantities related to the power spectrum and their connections to cosmological parameters.
  • Developed a set of parameters producing linear dependencies for efficient microwave background power spectrum estimation.
  • Achieved power spectrum calculations up to ${10}^{5}$ times faster than traditional methods after initial precomputations.
  • Achieved significant speed improvements in power spectrum estimation, making computations much quicker.
  • Successfully reduced computational effort while maintaining high accuracy in determining cosmological parameter errors.
  • Discussed the impact of parameter degeneracies, numerical precision, and systematic errors on estimations.

Abstract

We reexamine the issue of cosmological parameter estimation in light of current and upcoming high-precision measurements of the cosmic microwave background power spectrum. Physical quantities which determine the power spectrum are reviewed, and their connection to familiar cosmological parameters is explicated. We present a set of physical parameters, analytic functions of the usual cosmological parameters, upon which the microwave background power spectrum depends linearly (or with some other simple dependence) over a wide range of parameter values. With such a set of parameters, microwave background power spectra can be estimated with a high accuracy and negligible computational effort, vastly increasing the efficiency of the cosmological parameter error determination. The techniques presented here allow calculation of microwave background power spectra 10^5 times faster than comparably accurate direct codes (after precomputing a handful of power spectra). We discuss various issues of parameter estimation, including parameter degeneracies, numerical precision, mapping between physical and cosmological parameters, systematic errors, and illustrate these considerations with an idealized model of the Microwave Anisotropy Probe experiment.

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Cite This Study

Kosowsky et al. (2002) studied this question.

synapsesocial.com/papers/6a0f062aaa1655e5fb2326eehttps://doi.org/10.1103/physrevd.66.063007
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