Abstract We compute the leading-order evolution of parton fragmentation functions for all the Standard Model fermions and bosons up to energies far above the electroweak scale, where electroweak symmetry is restored. We discuss the difference between doublelogarithmic and leading-logarithmic resummation, and show how the latter can be implemented through a scale choice in the SU(2) coupling. We present results for a wide range of partonic center-of-mass energies, including the polarization of fermion and vector boson fragmentation functions induced by electroweak evolution
AbstractWe analyze the iterative structure of unfactorized partonic structure functions in the large...
Abstract We derive the electroweak (EW) collinear splitting functions for the Standard Model, includ...
An approach which unifies the Double Logarithmic Approximation at small x and the leading order DGLA...
Abstract We compute the leading-order evolution of parton distribution functions for all the Standar...
We compute the leading-order evolution of parton distribution functions for all the Standard Model f...
Abstract We update the earlier work of refs. [1, 2] on parton distribution functions in the full Sta...
Using the known resummation of virtual corrections together with knowledge of theleading-log structu...
We present new sets of fragmentation functions for charged pions, charged kaons, and protons, both a...
9 pages, 2 figuresIn analogy with parton distribution functions, also parton fragmentation functions...
Quark and gluon parton dihadron fragmentation functions and their evolution are studied in the proce...
We develop the framework to perform all-orders resummation of electroweak logarithms of Q/M for incl...
Using fragmentation functions for charged pions, charged kaons, and (anti)protons recently extracted...
We review the main aspects of the fragmentation of bottom quarks in top quark decay. The NLO b-quark...
We define a general scheme for the evolution of fragmentation functions which resums both soft gluon...
The transverse momentum dependent parton distribution/fragmentation functions (TMDs) are essential i...
AbstractWe analyze the iterative structure of unfactorized partonic structure functions in the large...
Abstract We derive the electroweak (EW) collinear splitting functions for the Standard Model, includ...
An approach which unifies the Double Logarithmic Approximation at small x and the leading order DGLA...
Abstract We compute the leading-order evolution of parton distribution functions for all the Standar...
We compute the leading-order evolution of parton distribution functions for all the Standard Model f...
Abstract We update the earlier work of refs. [1, 2] on parton distribution functions in the full Sta...
Using the known resummation of virtual corrections together with knowledge of theleading-log structu...
We present new sets of fragmentation functions for charged pions, charged kaons, and protons, both a...
9 pages, 2 figuresIn analogy with parton distribution functions, also parton fragmentation functions...
Quark and gluon parton dihadron fragmentation functions and their evolution are studied in the proce...
We develop the framework to perform all-orders resummation of electroweak logarithms of Q/M for incl...
Using fragmentation functions for charged pions, charged kaons, and (anti)protons recently extracted...
We review the main aspects of the fragmentation of bottom quarks in top quark decay. The NLO b-quark...
We define a general scheme for the evolution of fragmentation functions which resums both soft gluon...
The transverse momentum dependent parton distribution/fragmentation functions (TMDs) are essential i...
AbstractWe analyze the iterative structure of unfactorized partonic structure functions in the large...
Abstract We derive the electroweak (EW) collinear splitting functions for the Standard Model, includ...
An approach which unifies the Double Logarithmic Approximation at small x and the leading order DGLA...