0000000000697238

AUTHOR

F. Lange

showing 4 related works from this author

The anomalous magnetic moment of positive and negative muons

1977

Abstract The anomalous g -factor a ≡ ( g −2)/2 has been measured for muons of both charges in the Muon Storage Ring at CERN. The two results, a μ + = 1165910(12) × 10 −9 and a μ − = 1165936(12) × 10 −9 , are in good agreement with each other, and combine to give a mean a μ = 1165922(9) × 10 −9 , which is very close to the most recent theoretical prediction 1165921(10) × 10 −9 . For the experimental results, the total statistical and systematic error is given. The measurements thus confirm the remarkable QED calculation plus hadronic contribution, and serve as a precise verification of the CPT theorem for muons.

PhysicsParticle physicsNuclear and High Energy PhysicsMuonLarge Hadron ColliderMagnetic momentAnomalous magnetic dipole momentCPT symmetryg factorHadronNuclear physicsHigh Energy Physics::ExperimentParticle Physics - ExperimentStorage ringPhysics Letters B
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Final report on the CERN muon storage ring including the anomalous magnetic moment and the electric dipole moment of the muon, and a direct test of r…

1978

Abstract A comprehensive description of the muon storage ring and its operation is given, and the final results of the experiment are presented and discussed. The anomalous magnetic moments of positive and negative muons are found to be aμ+ = 1165911(11) × 10−9 and aμ− = 1165937(12) × 10−9 giving an average value for muons of aμ = 1165924(8.5) × 10−9. The electric dipole moments were also measured with the results Dμ+= (8.6 ± 4.5) × 10−9e · cm and Dμ− = (0.8 ± 4.3) × 10−19e · cm. Under the assumption of the CPT theorem these yield a weighted average of Dμ = (3.7 ± 3.4) × 10−19e · cm. Finally the time transformation of special relativity is shown to be valid to (0.8 ± 0.7) × 10−3 at γ ≅ 29.3…

Nuclear physicsPhysicsNuclear and High Energy PhysicsDipoleElectric dipole momentParticle physicsMuonMagnetic momentAnomalous magnetic dipole momentCPT symmetryTime dilationParticle Physics - ExperimentStorage ringNuclear Physics B
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Misguided Effort with Elusive Implications

2016

Good self-control has been linked to adaptive outcomes such as better health, cohesive personal relationships, success in the workplace and at school, and less susceptibility to crime and addictions. In contrast, self-control failure is linked to maladaptive outcomes. Understanding the mechanisms by which self-control predicts behavior may assist in promoting better regulation and outcomes. A popular approach to understanding self-control is the strength or resource depletion model. Self-control is conceptualized as a limited resource that becomes depleted after a period of exertion resulting in self-control failure. The model has typically been tested using a sequential-task experimental p…

Research designenergy modelSocial psychology (sociology)Ego depletionreanalysis[SHS.PSY]Humanities and Social Sciences/Psychology050109 social psychologystrength modelNEURAL BASESTask (project management)Developmental psychologyddc:150Task Performance and AnalysisPsychologyregistered replication reportLIMITED-RESOURCEApplied PsychologyComputingMilieux_MISCELLANEOUSGeneral Psychologystrength model; energy model; resource depletion; self-regulation; meta-analysismedia_commonCognitive scienceGeneral Commentary10093 Institute of Psychology05 social sciencessocial psychology3200 General PsychologySelf-control16. Peace & justiceResource depletionResearch DesignMeta-analysisFMRI[SCCO.PSYC]Cognitive science/PsychologyPsychologySocial psychologymetaanalysisAdultself-regulationmedia_common.quotation_subject050105 experimental psychology[SHS.PSY] Humanities and Social Sciences/PsychologyYoung AdultMeta-Analysis as TopicHumansPersonality0501 psychology and cognitive sciencesresource depletionMETAANALYSISPsykologi (exklusive tillämpad psykologi)self controlReproducibility of ResultsTillämpad psykologiReplication (computing)Confidence intervalSELF-CONTROLPsychology (excluding Applied Psychology)meta-analysisREPLICABILITYTASK150 Psychologyego depletionFrontiers in psychology
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Measurements of relativistic time dilatation for positive and negative muons in a circular orbit

1977

The lifetimes of both positive and negative relativistic (γ = 29.33) muons have been measured in the CERN Muon Storage Ring with the results τ+ = 64.419 (58) µs, τ− = 64.368 (29) µs The value for positive muons is in accordance with special relativity and the measured lifetime at rest: the Einstein time dilation factor agrees with experiment with a fractional error of 2×10−3 at 95% confidence. Assuming special relativity, the mean proper lifetime for μ− is found to be τ0− = 2.1948(10) µs the most accurate value reported to date. The agreement of this value with previously measured values of τ0+ confirms CPT invariance for the weak interaction in muon decay.

Nuclear physicsPhysicsParticle physicsMultidisciplinaryMuonCPT symmetryTime dilation of moving particlesHigh Energy Physics::ExperimentTime dilationCircular orbitSpecial relativityWeak interactionStorage ringNature
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