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- W2094362741 abstract "Electroweak Sudakov logarithms at high energy, of the form $(ensuremath{alpha}/{sin}^{2}{ensuremath{theta}}_{W}{)}^{n}{log}^{m}s/{M}_{Z,W}^{2}$, are summed using effective theory (EFT) methods. The exponentiation of Sudakov logarithms and factorization is discussed in the EFT formalism. Radiative corrections are computed to scattering processes in the standard model involving an arbitrary number of external particles. The computations include nonzero particle masses such as the $t$-quark mass, electroweak mixing effects which lead to unequal $W$ and $Z$ masses and a massless photon, and Higgs corrections proportional to the top-quark Yukawa coupling. The structure of the radiative corrections, and which terms are summed by the EFT renormalization group is discussed in detail. The omitted terms are smaller than 1%. We give numerical results for the corrections to dijet production, dilepton production, $toverline{t}$ production, and squark pair production. The purely electroweak corrections are significant---about 15% at 1 TeV, increasing to 30% at 5 TeV, and they change both the scattering rate and angular distribution. The QCD corrections (which are well-known) are also computed with the EFT. They are much larger---about a factor of 4 at 1 TeV, increasing to a factor of 30 at 5 TeV. Mass effects are also significant; the $qoverline{q}ensuremath{rightarrow}toverline{t}$ rate is enhanced relative to the light-quark production rate by 40%." @default.
- W2094362741 created "2016-06-24" @default.
- W2094362741 creator A5026031819 @default.
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- W2094362741 date "2008-10-09" @default.
- W2094362741 modified "2023-09-23" @default.
- W2094362741 title "Electroweak corrections using effective field theory: Applications to the CERN LHC" @default.
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- W2094362741 cites W1964838678 @default.
- W2094362741 cites W1965901640 @default.
- W2094362741 cites W1966902317 @default.
- W2094362741 cites W1967737330 @default.
- W2094362741 cites W1968714018 @default.
- W2094362741 cites W1969775485 @default.
- W2094362741 cites W1969806874 @default.
- W2094362741 cites W1974252828 @default.
- W2094362741 cites W1974631193 @default.
- W2094362741 cites W1974747188 @default.
- W2094362741 cites W1975024736 @default.
- W2094362741 cites W1984150620 @default.
- W2094362741 cites W1987851449 @default.
- W2094362741 cites W1988754159 @default.
- W2094362741 cites W1992220975 @default.
- W2094362741 cites W1992525334 @default.
- W2094362741 cites W1996198474 @default.
- W2094362741 cites W1998820032 @default.
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- W2094362741 cites W2023887459 @default.
- W2094362741 cites W2026446278 @default.
- W2094362741 cites W2028514865 @default.
- W2094362741 cites W2028834024 @default.
- W2094362741 cites W2030594256 @default.
- W2094362741 cites W2032464378 @default.
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- W2094362741 cites W2035918617 @default.
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- W2094362741 cites W2043353276 @default.
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- W2094362741 cites W2056107118 @default.
- W2094362741 cites W2063181580 @default.
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- W2094362741 cites W2169315436 @default.
- W2094362741 cites W2321373253 @default.
- W2094362741 cites W2951509808 @default.
- W2094362741 cites W3098438916 @default.
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- W2094362741 cites W3105327737 @default.
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- W2094362741 doi "https://doi.org/10.1103/physrevd.78.073006" @default.
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