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Statistical model uncertainty and OPERA-like time-of-flight measurements

Time-of-flight measurements such as the OPERA and MINOS experiments rely crucially on statistical analysis (as well as many other ingredients) for their conclusions. The nature of these experiments leads to a simple class of statistical models for the results; however, which model in the class is ap...

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Detalles Bibliográficos
Autores principales: Riordan, Oliver, Selby, Alex
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1395359
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author Riordan, Oliver
Selby, Alex
author_facet Riordan, Oliver
Selby, Alex
author_sort Riordan, Oliver
collection CERN
description Time-of-flight measurements such as the OPERA and MINOS experiments rely crucially on statistical analysis (as well as many other ingredients) for their conclusions. The nature of these experiments leads to a simple class of statistical models for the results; however, which model in the class is appropriate is not known exactly, as this depends on information obtained experimentally, which is subject to noise and other errors. To obtain robust conclusions, this problem, known as "model uncertainty," needs to be addressed, with quantitative bounds on the effect such uncertainty may have on the final result. The OPERA (and MINOS) analysis appears to take steps to mitigate the effects of model uncertainty, though without quantifying any remaining effect. We describe one of the strategies used (averaging individual probability distributions), and point out a potential source of error if this is not carried out correctly. We then argue that the correct version of this strategy is not the most effective, and suggest possible alternatives. These alternatives may give more accurate statistical results using the same data, allowing, for example, more accurate determination of the dependence of the anomalous time shift on energy. Which strategies work and how well can only be evaluated with access to the full data. Whether or not the anomalous result from OPERA turns out to be confirmed, we believe that techniques such as those presented here may be appropriate for the analysis of other timing experiments of this type.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-13953592019-09-30T06:29:59Zhttp://cds.cern.ch/record/1395359engRiordan, OliverSelby, AlexStatistical model uncertainty and OPERA-like time-of-flight measurementsParticle Physics - ExperimentTime-of-flight measurements such as the OPERA and MINOS experiments rely crucially on statistical analysis (as well as many other ingredients) for their conclusions. The nature of these experiments leads to a simple class of statistical models for the results; however, which model in the class is appropriate is not known exactly, as this depends on information obtained experimentally, which is subject to noise and other errors. To obtain robust conclusions, this problem, known as "model uncertainty," needs to be addressed, with quantitative bounds on the effect such uncertainty may have on the final result. The OPERA (and MINOS) analysis appears to take steps to mitigate the effects of model uncertainty, though without quantifying any remaining effect. We describe one of the strategies used (averaging individual probability distributions), and point out a potential source of error if this is not carried out correctly. We then argue that the correct version of this strategy is not the most effective, and suggest possible alternatives. These alternatives may give more accurate statistical results using the same data, allowing, for example, more accurate determination of the dependence of the anomalous time shift on energy. Which strategies work and how well can only be evaluated with access to the full data. Whether or not the anomalous result from OPERA turns out to be confirmed, we believe that techniques such as those presented here may be appropriate for the analysis of other timing experiments of this type.Time-of-flight measurements such as the OPERA and MINOS experiments rely crucially on statistical analysis (as well as many other ingredients) for their conclusions. The nature of these experiments leads to a simple class of statistical models for the results/ however, which model in the class is appropriate is not known exactly, as this depends on information obtained experimentally, which is subject to noise and other errors. To obtain robust conclusions, this problem, known as 'model uncertainty,' needs to be addressed, with quantitative bounds on the effect such uncertainty may have on the final result. The OPERA (and MINOS) analysis appears to take steps to mitigate the effects of model uncertainty, though without quantifying any remaining effect. We describe one of the strategies used (averaging individual probability distributions), and point out a potential source of error if this is not carried out correctly. We then argue that the correct version of this strategy is not the most effective, and suggest possible alternatives. These alternatives may give more accurate statistical results using the same data, allowing, for example, more accurate determination of the dependence of the anomalous time shift on energy. Which strategies work and how well can only be evaluated with access to the full data. Whether or not the anomalous result from OPERA turns out to be confirmed, we believe that techniques such as those presented here may be appropriate for the analysis of other timing experiments of this type.arXiv:1111.0282oai:cds.cern.ch:13953592011-11-02
spellingShingle Particle Physics - Experiment
Riordan, Oliver
Selby, Alex
Statistical model uncertainty and OPERA-like time-of-flight measurements
title Statistical model uncertainty and OPERA-like time-of-flight measurements
title_full Statistical model uncertainty and OPERA-like time-of-flight measurements
title_fullStr Statistical model uncertainty and OPERA-like time-of-flight measurements
title_full_unstemmed Statistical model uncertainty and OPERA-like time-of-flight measurements
title_short Statistical model uncertainty and OPERA-like time-of-flight measurements
title_sort statistical model uncertainty and opera-like time-of-flight measurements
topic Particle Physics - Experiment
url http://cds.cern.ch/record/1395359
work_keys_str_mv AT riordanoliver statisticalmodeluncertaintyandoperaliketimeofflightmeasurements
AT selbyalex statisticalmodeluncertaintyandoperaliketimeofflightmeasurements