The dominant production mechanism for heavy quark-antiquark bound states in very high energy processes is fragmentation, the splitting of a high energy parton into a quarkonium state and other partons. We show that the fragmentation functions $D(z,\mu)$ describing these processes can be calculated using perturbative QCD. We calculate the fragmentation functions for a gluon to split into S-wave quarkonium states to leading order in the QCD coupling constant. The leading logarithms of $\mu/m_Q$, where $\mu$ is the factorization scale and $m_Q$ is the heavy quark mass, are summed up using Altarelli-Parisi evolution equations
The fragmentation of gluons to gluonium states is analyzed qualitatively in the non-perturbative reg...
Multiple scattering, induced radiative energy loss and modified fragmentation functions of a heavy ...
The dominant mechanism to produce hadronic bound states with large transverse momentum is fragmentat...
[[abstract]]The perturbative QCD fragmentation functions for a heavy quark to fragment into heavy-li...
It is well known that the dominant mechanism to produce hadronic bound states with large transverse ...
The dominant production mechanism for ${\bar b} c$ bound states in high energy processes is the prod...
In this work, we calculate the fragmentation function (FF) of pseudoscalar S -wave heavy quarkonia f...
[[abstract]]In decays of the Z0, the dominant mechanism for the direct production of charmonium stat...
The fragmentation function of a scalar leptoquark into possible S-wave bound states with a heavy ant...
[[abstract]]Gluons cannot directly fragment into B(c) mesons until at order alpha(s)3. However, the ...
Abstract In this paper we investigate the fragmentation function for heavy quarkanium using a global...
Investigating the production of polarized heavy quarkonia in terms of recently proposed QCD factoriz...
We derive the initial condition for the perturbative fragmentation function of a heavy quark through...
The fragmentation of gluons to gluonium states is analyzed qualitatively in the non-perturbative reg...
The recent development of perturbative QCD (PQCD) fragmentation functions has strong impact on quark...
The fragmentation of gluons to gluonium states is analyzed qualitatively in the non-perturbative reg...
Multiple scattering, induced radiative energy loss and modified fragmentation functions of a heavy ...
The dominant mechanism to produce hadronic bound states with large transverse momentum is fragmentat...
[[abstract]]The perturbative QCD fragmentation functions for a heavy quark to fragment into heavy-li...
It is well known that the dominant mechanism to produce hadronic bound states with large transverse ...
The dominant production mechanism for ${\bar b} c$ bound states in high energy processes is the prod...
In this work, we calculate the fragmentation function (FF) of pseudoscalar S -wave heavy quarkonia f...
[[abstract]]In decays of the Z0, the dominant mechanism for the direct production of charmonium stat...
The fragmentation function of a scalar leptoquark into possible S-wave bound states with a heavy ant...
[[abstract]]Gluons cannot directly fragment into B(c) mesons until at order alpha(s)3. However, the ...
Abstract In this paper we investigate the fragmentation function for heavy quarkanium using a global...
Investigating the production of polarized heavy quarkonia in terms of recently proposed QCD factoriz...
We derive the initial condition for the perturbative fragmentation function of a heavy quark through...
The fragmentation of gluons to gluonium states is analyzed qualitatively in the non-perturbative reg...
The recent development of perturbative QCD (PQCD) fragmentation functions has strong impact on quark...
The fragmentation of gluons to gluonium states is analyzed qualitatively in the non-perturbative reg...
Multiple scattering, induced radiative energy loss and modified fragmentation functions of a heavy ...
The dominant mechanism to produce hadronic bound states with large transverse momentum is fragmentat...