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      Revisiting the global electroweak fit of the Standard Model and beyond with Gfitter

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          A Unified Approach to the Classical Statistical Analysis of Small Signals

          We give a classical confidence belt construction which unifies the treatment of upper confidence limits for null results and two-sided confidence intervals for non-null results. The unified treatment solves a problem (apparently not previously recognized) that the choice of upper limit or two-sided intervals leads to intervals which are not confidence intervals if the choice is based on the data. We apply the construction to two related problems which have recently been a battle-ground between classical and Bayesian statistics: Poisson processes with background, and Gaussian errors with a bounded physical region. In contrast with the usual classical construction for upper limits, our construction avoids unphysical confidence intervals. In contrast with some popular Bayesian intervals, our intervals eliminate conservatism (frequentist coverage greater than the stated confidence) in the Gaussian case and reduce it to a level dictated by discreteness in the Poisson case. We generalize the method in order to apply it to analysis of experiments searching for neutrino oscillations. We show that this technique both gives correct coverage and is powerful, while other classical techniques that have been used by neutrino oscillation search experiments fail one or both of these criteria.
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            Deep-inelastic scattering beyond the leading order in asymptotically free gauge theories

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              Radiative corrections in theSU(2)L×U(1)theory: A simple renormalization framework

              A. Sirlin (1980)
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                Author and article information

                Journal
                The European Physical Journal C
                Eur. Phys. J. C
                Springer Nature
                1434-6044
                1434-6052
                April 2009
                March 2009
                : 60
                : 4
                : 543-583
                Affiliations
                [1 ]The Gfitter Group
                Article
                10.1140/epjc/s10052-009-0966-6
                5a31f24f-2292-4e99-bd4b-ed66902098e8
                © 2009
                History

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