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abstract
We present a new version of PyR@TE, a Python tool for the computation of renormalization group equations for general, non-supersymmetric gauge theories. Its new core relies on a recent paper by Poole & Thomsen (arXiv:1906.04625) to compute the $\beta$-functions. In this framework, gauge kinetic mixing is naturally implemented, and the Weyl consistency relations between gauge, quartic and Yukawa couplings are automatically satisfied. One of the main new features is the possibility for the user to compute the gauge coupling $\beta$-functions up to the three-loop order. Large parts of the PyR@TE code have been rewritten and improved, including the group theory module PyLie. As a result, the overall performance in terms of computation speed was drastically improved and the model file is more flexible and user-friendly.
Forward citations
Cited by 7 Pith papers
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GOOFy-compatible 3HDMs and beyond
A GOOFy-compatible quadratic sector requires a sign character realized in R*otimesR, and the RG stability of the 2HDM r0 relation is a unique SU(2) accident.
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Phase Transitions in Dimensional Reduction up to Three Loops
In a toy complex-scalar model, 1-loop dimension-6 matching corrections compete with 2-loop quartic corrections and dominate 3-loop thermal-mass corrections for strong phase transitions.
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GOOFy -- a systematic approach
GOOFy symmetry imposes parameter relations on scalar and fermion Lagrangians that stay fixed under renormalization-group running up to two and three loops.
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Hidden Sector Custodial Naturalness
A minimal SO(5) custodial naturalness model with two scalar singlets dynamically generates the electroweak scale and supplies a freeze-in dark matter candidate.
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The goofy-symmetric Standard Model and the Hierarchy Problem
The Standard Model action is invariant under goofy transformations when the Higgs mass term vanishes, offering a new symmetry-based protection of the Higgs mass and generating electroweak symmetry breaking through spo...
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Custodial Naturalness
Custodial Naturalness uses classical scale invariance plus a custodial SO(6) symmetry to make the Higgs a naturally light pseudo-Goldstone boson, with testable new particle predictions.
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The price for monopole dark matter
Dark matter can consist of 't Hooft-Polyakov monopoles in a dark SU(2) sector, but only in a narrow window with m_M ≳ 10^8 GeV, near-bound dark radiation, and possibly detectable gravitational waves.
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