CWRU PAT Coffee Agenda

Tuesdays 10:30 - 11:30 | Fridays 11:30 - 12:30

+1 Particle Physics Models for the 17 MeV Anomaly in Beryllium Nuclear Decays.

pxf112 +1

+1 CMB-S4 and the Hemispherical Variance Anomaly.

jbm120 +1 jtd55 +1 mro28 +1

+1 Primordial Gravitational Waves from Axion-Gauge Fields Dynamics.

lxj154 +1

+1 The Moon as a Recorder of Nearby Supernovae.

jtd55 +1

0 Gauge See-saw: a mechanism for a light gauge boson.

bump   oxg34 +1

Showing votes from 2016-08-12 12:30 to 2016-08-16 11:30 | Next meeting is Tuesday Aug 12th, 10:30 am.

users

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astro-ph.CO

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astro-ph.HE

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astro-ph.GA

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gr-qc

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hep-ph

  • Particle Physics Models for the 17 MeV Anomaly in Beryllium Nuclear Decays.- [PDF] - [Article]

    Jonathan L. Feng, Bartosz Fornal, Iftah Galon, Susan Gardner, Jordan Smolinsky, Tim M. P. Tait, Philip Tanedo
     

    The 6.8$\sigma$ anomaly in excited 8Be nuclear decays via internal pair creation is fit well by a new particle interpretation. In a previous analysis, we showed that a 17 MeV protophobic gauge boson provides a particle physics explanation of the anomaly consistent with all existing constraints. Here we begin with a review of the physics of internal pair creation in 8Be decays and the characteristics of the observed anomaly. To develop its particle interpretation, we provide an effective operator analysis for excited 8Be decays to particles with a variety of spins and parities and show that these considerations exclude simple models with scalar or pseudoscalar particles. We discuss the required couplings for a gauge boson to give the observed signal, highlighting the significant dependence on the precise mass of the boson and isospin mixing and breaking effects. We present anomaly-free extensions of the Standard Model that contain protophobic gauge bosons with the desired couplings to explain the 8Be anomaly. In the first model, the new force carrier is a U(1)B gauge boson that kinetically mixes with the photon; in the second model, it is a U(1)(B-L) gauge boson with a similar kinetic mixing. In both cases, the models predict relatively large charged lepton couplings ~ 0.001 that can resolve the discrepancy in the muon anomalous magnetic moment and are amenable to many experimental probes. The models also contain vectorlike leptons at the weak scale that may be accessible to near future LHC searches.

hep-th

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hep-ex

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quant-ph

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other

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