Title of article :
Bayesian methods for parameter estimation in effective field theories Original Research Article
Author/Authors :
M.R. Schindler، نويسنده , , D.R. Phillips ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
27
From page :
682
To page :
708
Abstract :
We demonstrate and explicate Bayesian methods for fitting the parameters that encode the impact of short-distance physics on observables in effective field theories (EFTs). We use Bayes’ theorem together with the principle of maximum entropy to account for the prior information that these parameters should be natural, i.e., image in appropriate units. Marginalization can then be employed to integrate the resulting probability density function (pdf) over the EFT parameters that are not of specific interest in the fit. We also explore marginalization over the order of the EFT calculation, M, and over the variable, R, that encodes the inherent ambiguity in the notion that these parameters are image. This results in a very general formula for the pdf of the EFT parameters of interest given a data set, D. We use this formula and the simpler “augmented χ2” in a toy problem for which we generate pseudo-data. These Bayesian methods, when used in combination with the “naturalness prior”, facilitate reliable extractions of EFT parameters in cases where χ2 methods are ambiguous at best. We also examine the problem of extracting the nucleon mass in the chiral limit, M0, and the nucleon sigma term, from pseudo-data on the nucleon mass as a function of the pion mass. We find that Bayesian techniques can provide reliable information on M0, even if some of the data points used for the extraction lie outside the region of applicability of the EFT.
Journal title :
Annals of Physics
Serial Year :
2009
Journal title :
Annals of Physics
Record number :
1206186
Link To Document :
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