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      Data Analysis Recipes: Products of multivariate Gaussians in Bayesian inferences

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          Abstract

          A product of two Gaussians (or normal distributions) is another Gaussian. That's a valuable and useful fact! Here we use it to derive a refactoring of a common product of multivariate Gaussians: The product of a Gaussian likelihood times a Gaussian prior, where some or all of those parameters enter the likelihood only in the mean and only linearly. That is, a linear, Gaussian, Bayesian model. This product of a likelihood times a prior pdf can be refactored into a product of a marginalized likelihood (or a Bayesian evidence) times a posterior pdf, where (in this case) both of these are also Gaussian. The means and variance tensors of the refactored Gaussians are straightforward to obtain as closed-form expressions; here we deliver these expressions, with discussion. The closed-form expressions can be used to speed up and improve the precision of inferences that contain linear parameters with Gaussian priors. We connect these methods to inferences that arise frequently in physics and astronomy. If all you want is the answer, the question is posed and answered at the beginning of Section 3. We show two toy examples, in the form of worked exercises, in Section 4. The solutions, discussion, and exercises in this Note are aimed at someone who is already familiar with the basic ideas of Bayesian inference and probability.

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          Author and article information

          Journal
          28 May 2020
          Article
          2005.14199
          c306a391-28e2-45aa-b54b-02394ae35ad4

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          a chapter of a book we will never write
          stat.CO astro-ph.IM physics.data-an

          Mathematical & Computational physics,Instrumentation & Methods for astrophysics,Mathematical modeling & Computation

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