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the claim
LEP II had sufficient energy to have statistically discovered a 125 GeV Higgs boson
the verdict
REFUTED
the evidence says no
refutedsupported
the weight of evidence
0 sources for · 4 against

Although LEP reached center-of-mass energies up to approximately 208 GeV—theoretically sufficient for production—it failed to achieve the statistical sensitivity or luminosity required to discover the 125 GeV Higgs boson, setting a lower limit of 114.4 GeV before being superseded by the LHC.

Evidence against · 4
2022 · cited by 27
In July 2012, the ATLAS and CMS collaborations at the CERN Large Hadron Collider announced the observation of a Higgs boson at a mass of around 125 gigaelectronvolts. Ten years later, and with the data corresponding to the production of a 30-times larger number of Higgs bosons, we have learnt much more about the properties of the Higgs boson. The CMS experiment has observed the Higgs boson in numerous fermionic and bosonic decay channels, established its spin-parity quantum numbers, determined its mass and measured its production cross-sections in various modes. Here the CMS Collaboration reports the most up-to-date combination of results on the properties of the Higgs boson, including the most stringent limit on the cross-section for the production of a pair of Higgs bosons, on the basis of data from proton-proton collisions at a centre-of-mass energy of 13 teraelectronvolts. Within the uncertainties, all these observations are compatible with the predictions of the standard model of elementary particle physics. Much evidence points to the fact that the standard model is a low-energy approximation of a more comprehensive theory. Several of the standard model issues originate in the sector of Higgs boson physics. An order of magnitude larger number of Higgs bosons, expected to be examined over the next 15 years, will help deepen our understanding of this crucial sector.
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The analysis

rails:sufficiency:refuted:for=0+0p:against=4+0p | v55:sufficiency

More against · 3
cited by 0
The Probability Density of the Higgs Boson Mass The LEP Collaborations have reported a small excess of events in their combined Higgs boson analysis at center of mass energies up to about 208 GeV. In this communication, I present the result of a calculation of the probability distribution function of the Higgs boson mass which can be rigorously obtained if the validity of the Standard Model is assumed. It arises from the combination of the most recent set of precision electroweak data and the current results of the Higgs searches at LEP 2. Published as: Phys.Rev.D63:071301,2001 DOI: 10.1103/PhysRevD.63.071301 arXiv categories: hep-ph hep-ex physics.data-an
cited by 0
Higgs Search Results This paper shortly reports on the results of Higgs boson searches performed at LEP and Tevatron. No signal is found and limits on the mass and couplings of the Higgs boson are derived. Interpreting the data in the framework of the Standard Model, the 95% C.L. lower limit of 114.4 GeV on the Higgs boson mass is obtained. Published as: eConf C020620 (2002) SABT04 arXiv categories: hep-ex
cited by 0
the Higgs boson was a 40-year effort by physicists to prove the existence or non-existence of the Higgs boson, first theorised in the 1960s. The Higgs boson The search for the Higgs boson was a 40-year effort by physicists to prove the existence or non-existence of the Higgs boson, first theorised in the 1960s. The Higgs boson was the last unobserved fundamental particle in the Standard Model of particle physics, and its discovery was described as being the "ultimate verification" of the Standard Model. In March 2013, the Higgs boson was officially co The electron and the positron together produce a Z boson which in turn decay to a Higgs boson and a pair of fermions. The electron and the positron together produce a Z boson which in turn radiates away a Higgs boson. (Higgs strahlung) The electron and the positron exchange a W or Z boson which along the way emits a Higgs boson. The fact that no decays of the Z boson to the Higgs were observed at LEP immediately implies that the Higgs boson, if it existed, must be heavier than the Z boson (~91 GeV/c2). Subsequently, with each successive energy upgrade of the LEP, hope re-emerged that discovery of the Higgs was just around the corner. Just prior to the planned shut down of LEP in 2000, few events that resemble a Higgs boson with a…
Everything we examined (4)
This check searched the claim as stated. It did not run a separate search for evidence against it.
  1. arXiv: The Probability Density of the Higgs Boson Masspeer-reviewedno side taken
  2. arXiv: Higgs Search Resultspeer-reviewedno side taken
  3. A portrait of the Higgs boson by the CMS experiment ten years after the discovery.peer-reviewedno side taken
  4. Search for the Higgs bosonreferenceno side taken
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