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Gluon quasidistribution function at one loop
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Gluon quasidistribution function at one loop
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We study the unpolarized gluon quasidistribution function in the nucleon at one loop level in the large momentum effective theory. For the quark quasidistribution, power law ultraviolet divergences arise in the cut-off scheme and an important observation is that they all are subjected to Wilson lines. However for the gluon quasidistribution function, we first point out that the linear ultraviolet divergences also exist in the real diagram which is not connected to any Wilson line. We then study the one loop corrections to parton distribution functions in both cut-off scheme and dimensional regularization to deal with the ultraviolet divergences. In addition to the ordinary quark and gluon distributions, we also include the quark to gluon and gluon to quark splitting diagrams. The complete one-loop matching factors between the quasi and light cone parton distribution functions are presented in the cut-off scheme. We derive the $P^z$ evolution equation for quasi parton distribution functions, and find that the $P^z$ evolution kernels are identical to the DGLAP evolution kernels.
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Cited by 1 Pith paper
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Isolating Scheme Dependence of Quasi-PDFs in the RI/MOM Scheme
Two new finite renormalization schemes for quasi-PDFs cancel all RI/MOM reference-momentum dependence from the renormalized quasi-PDF, counterterm, and matching coefficient at one loop.
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