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Introduction to Effective Field Theories

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arxiv 1804.05863 v1 pith:JESSJHVF submitted 2018-04-16 hep-ph

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keywords coveredeffectivefieldlecturesschooltheoriesapplicationscompute
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Lecture notes from the 2017 Les Houches Summer School on Effective Field Theories. The lectures covered introductory material on EFTs as used in high energy physics to compute experimentally observable quantities. Other lectures at the school covered a wide range of applications in greater depth.

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Cited by 11 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. geoSCET: Soft Theorems from Power Counting

    hep-th 2026-07 accept novelty 8.0 of 10

    geoSCET derives geometric soft theorems for scalar field theories directly from effective-field-theory power counting and proves they are exact to all orders in perturbation theory when no potential is present.

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  4. Gravitational Vacuum Polarization: Decoupling and the Conformal Anomaly

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    The □R conformal anomaly term is a genuine infrared effect, fixed by decoupling of the massive scalar ⟨TT⟩ correlator and encoded in a UV-finite spectral sum rule that becomes a Dirac δ-function at m=0.

  5. On Cosmological Correlators with Boundary Contributions

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    The paper derives a correspondence between boundary terms and field redefinitions for cosmological correlators and classifies non-vanishing boundary contributions in massive-exchange diagrams under dS isometries and b...

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    In the Zee model, one-loop EFT running—not direct matching—generates the neutrino mass matrix, and 1% variations in fitted high-scale couplings shift neutrino observables beyond next-generation experimental precision.

  7. Beyond the Lorenz Gauge: Probing a Stueckelberg Scalar in the Electric Aharonov-Bohm Effect

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    The paper proposes a frequency-sweep protocol in single-electron interferometry to detect a potential Stueckelberg scalar contribution to the electric Aharonov-Bohm phase shift, distinguishable by its 1-cos(ωT) time d...

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    Derives new physics scale constraints in a six-dimensional EFT subspace for μ to e transitions using data from μ→eγ, μ→3e, and nuclear conversion experiments while highlighting their complementarity.

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  11. Introductory Lectures on Resurgence: CERN Summer School 2024

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