In order to successfully describe DIS data, one must take heavy quark mass effects into account. This is often achieved using so called variable flavour number schemes, in which a parton distribution for the heavy quark species is defined above a suitable matching scale. At small x, one must also potentially include high energy corrections to this framework arising from the BFKL equation. We outline the definition of a variable flavour scheme which allows such corrections to be consistently implemented alongside a fixed order QCD expansion. Results of a global fit using this scheme are presented. We also discuss an extension of the resummation to NLL order
AbstractThe FONLL general-mass variable-flavour number scheme provides a framework for the matching ...
The FONLL general-mass variable-flavour number scheme provides a framework for the matching of a cal...
We discuss massive quark effects in the endpoint region $x \to 1$ of inclusive deep inelastic scatte...
In order to successfully describe DIS data, one must take heavy quark mass effects into account. Thi...
We define a new variable flavour number scheme for use in deep inelastic scattering, motivated by th...
We define a new variable flavor number scheme for use in deep inelastic scattering, motivated by the...
At NNLO it is particularly important to have a Variable-Flavour Number Scheme (VFNS) to deal with he...
We present results from a new event-generator Monte Carlo program for semi- inclusive DIS heavy quar...
We discuss massive quark effects in the end-point region x → 1 of inclusive deep inelastic scatterin...
We discuss massive quark effects in the end-point region x → 1 of inclusive deep inelastic scatterin...
We present the matching relations of the variable flavor number scheme at next-to-leading order, whi...
We present the matching relations of the variable flavor number scheme at next-to-leading order, whi...
We present the matching relations of the variable flavor number scheme at next-to-leading order, whi...
We present the matching relations of the variable flavor number scheme at next-to-leading order, whi...
We have recently proposed a form of high-energy factorization in order to find the small-x behaviour...
AbstractThe FONLL general-mass variable-flavour number scheme provides a framework for the matching ...
The FONLL general-mass variable-flavour number scheme provides a framework for the matching of a cal...
We discuss massive quark effects in the endpoint region $x \to 1$ of inclusive deep inelastic scatte...
In order to successfully describe DIS data, one must take heavy quark mass effects into account. Thi...
We define a new variable flavour number scheme for use in deep inelastic scattering, motivated by th...
We define a new variable flavor number scheme for use in deep inelastic scattering, motivated by the...
At NNLO it is particularly important to have a Variable-Flavour Number Scheme (VFNS) to deal with he...
We present results from a new event-generator Monte Carlo program for semi- inclusive DIS heavy quar...
We discuss massive quark effects in the end-point region x → 1 of inclusive deep inelastic scatterin...
We discuss massive quark effects in the end-point region x → 1 of inclusive deep inelastic scatterin...
We present the matching relations of the variable flavor number scheme at next-to-leading order, whi...
We present the matching relations of the variable flavor number scheme at next-to-leading order, whi...
We present the matching relations of the variable flavor number scheme at next-to-leading order, whi...
We present the matching relations of the variable flavor number scheme at next-to-leading order, whi...
We have recently proposed a form of high-energy factorization in order to find the small-x behaviour...
AbstractThe FONLL general-mass variable-flavour number scheme provides a framework for the matching ...
The FONLL general-mass variable-flavour number scheme provides a framework for the matching of a cal...
We discuss massive quark effects in the endpoint region $x \to 1$ of inclusive deep inelastic scatte...