Abstract We compute the leading-order evolution of parton distribution functions for all the Standard Model fermions and bosons up to energy scales far above the electroweak scale, where electroweak symmetry is restored. Our results include the 52 PDFs of the unpolarized proton, evolving according to the SU(3), SU(2), U(1), mixed SU(2)×U(1) and Yukawa interactions. We illustrate the numerical effects on parton distributions at large energies, and show that this can lead to important corrections to parton luminosities at a future 100 TeV collider
We review a microscopic model of the nuclear parton distribution functions, which accounts for a num...
We review the current status of parton distribution function (PDF) determinations for unpolarized an...
We discuss two aspects of electroweak physics that relate to parton distributions: (i) the calculati...
We compute the leading-order evolution of parton distribution functions for all the Standard Model f...
We compute the leading-order evolution of parton distribution functions for all the Standard Model f...
Abstract We compute the leading-order evolution of parton fragmentation functions for all the Standa...
Using the known resummation of virtual corrections together with knowledge of theleading-log structu...
Abstract We update the earlier work of refs. [1, 2] on parton distribution functions in the full Sta...
The determination of the parton distribution functions (PDFs) of the proton will be an essential inp...
Abstract Transverse and longitudinal electroweak gauge boson parton distribution functions (PDFs) ar...
Large transverse-momentum scaling as Edσd3p=p-8f(x,x) is first discussed in terms of models of parto...
Though the Standard Model (SM) of particle physics is one of the most successful achievements in mod...
Recently, there have been rapid developments in lattice-QCD calculations of proton structure, especi...
A new generation of (unpolarized) dynamical parton distribution functions of the nucleon is determin...
The Higgs particle was first predicted in 1964, and was discovered in the summer of 2012 at the Larg...
We review a microscopic model of the nuclear parton distribution functions, which accounts for a num...
We review the current status of parton distribution function (PDF) determinations for unpolarized an...
We discuss two aspects of electroweak physics that relate to parton distributions: (i) the calculati...
We compute the leading-order evolution of parton distribution functions for all the Standard Model f...
We compute the leading-order evolution of parton distribution functions for all the Standard Model f...
Abstract We compute the leading-order evolution of parton fragmentation functions for all the Standa...
Using the known resummation of virtual corrections together with knowledge of theleading-log structu...
Abstract We update the earlier work of refs. [1, 2] on parton distribution functions in the full Sta...
The determination of the parton distribution functions (PDFs) of the proton will be an essential inp...
Abstract Transverse and longitudinal electroweak gauge boson parton distribution functions (PDFs) ar...
Large transverse-momentum scaling as Edσd3p=p-8f(x,x) is first discussed in terms of models of parto...
Though the Standard Model (SM) of particle physics is one of the most successful achievements in mod...
Recently, there have been rapid developments in lattice-QCD calculations of proton structure, especi...
A new generation of (unpolarized) dynamical parton distribution functions of the nucleon is determin...
The Higgs particle was first predicted in 1964, and was discovered in the summer of 2012 at the Larg...
We review a microscopic model of the nuclear parton distribution functions, which accounts for a num...
We review the current status of parton distribution function (PDF) determinations for unpolarized an...
We discuss two aspects of electroweak physics that relate to parton distributions: (i) the calculati...