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Parity and Time-Reversal Violation in Atomic Systems

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arxiv 1412.6644 v1 pith:YN6S3V3L submitted 2014-12-20 physics.atom-ph

classification physics.atom-ph
keywords atomicparitytime-reversalviolationbeyondexperimentalphysicsrecent
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Studying the violation of parity and time-reversal invariance in atomic systems has proven to be a very effective means for testing the electroweak theory at low energy and searching for physics beyond it. Recent developments in both atomic theory and experimental methods have led to the ability to make extremely precise theoretical calculations and experimental measurements of these effects. Such studies are complementary to direct high-energy searches, and can be performed for just a fraction of the cost. We review the recent progress in the field of parity and time-reversal violation in atoms, molecules, and nuclei, and examine the implications for physics beyond the Standard Model, with an emphasis on possible areas for development in the near future.

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  1. Global fits of the SM parameters

    hep-ph 2019-08 unverdicted novelty 2.0 of 10

    This proceedings review compiles current weak mixing angle and W mass data and reports a 1.6 sigma excess of the direct W mass average over the indirect Standard Model fit.

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