collaborators

20 papers

hep-lat2026

Spin and momentum fraction carried by partons in the nucleon

Constantia Alexandrou, Simone Bacchio, Jacob Finkenrath +6

We determine the momentum fraction and angular momentum carried by quarks and gluons in the proton in lattice QCD. We use four ensembles simulated with up, down, strange and charm…

hep-lat2026

Nucleon unpolarized second Mellin moments using lattice QCD ensembles with physical quark masses and in the continuum limit

Constantia Alexandrou, Simone Bacchio, Jacob Finkenrath +6

We compute the matrix elements of the energy-momentum tensor of the nucleon using four ensembles of twisted mass clover-improved fermions with the up, down, strange and charm quark…

hep-lat2026

The nucleon unpolarized generalized form factors and Mellin moments up to fourth order

Constantia Alexandrou, Simone Bacchio, Martha Constantinou +3

Nucleon Mellin moments of parton distribution are computed up to the fourth order in lattice QCD. The computation is performed using one ensemble of twisted mass fermions at the ph…

hep-lat2026

Proton and neutron electromagnetic form factors from lattice QCD in the continuum limit

Constantia Alexandrou, Simone Bacchio, Giannis Koutsou +2

We compute the electromagnetic form factors of the proton and neutron using lattice QCD. We employ =2+1+1 twisted mass clover-improved fermions with quark masses tune…

hep-lat2026

Higher Mellin Moments of the Unpolarized PDF of the Pion and the Kaon from Lattice QCD

Constantia Alexandrou, Simone Bacchio, Priyajit Jana +6

We present results on the Mellin moments of the unpolarized parton distribution function (PDF) of the pion and kaon up to the fourth order. The computation is done using one $N_f=2…

hep-lat2026

Nucleon strange electromagnetic form factors using twisted-mass fermions at the physical point

Constantia Alexandrou, Simone Bacchio, Mathis Bode +7

We present the strange electromagnetic form factors of the nucleon using lattice QCD with twisted mass clover-improved fermions and quark masses tuned to their physical…