AbstractSingle and pair top-quark production in proton–lead (p–Pb) and lead–lead (Pb–Pb) collisions at the CERN Large Hadron Collider (LHC) and Future Circular Collider (FCC) energies, are studied with next-to-leading-order perturbative QCD calculations including nuclear parton distribution functions. At the LHC, the pair-production cross sections amount to σtt¯=3.4 μb in Pb–Pb at sNN=5.5 TeV, and σtt¯=60 nb in p–Pb at sNN=8.8 TeV. At the FCC energies of sNN=39 and 63 TeV, the same cross sections are factors of 90 and 55 times larger respectively. In the leptonic final-state tt¯→W+bW−b¯→bb¯ℓℓνν with ℓ=e±,μ±, after typical acceptance and efficiency cuts, one expects about 90 and 300 top-quarks per nominal LHC-year and 4.7⋅104 and 105 per FCC...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Single and pair top-quark production in proton-lead (p-Pb) and lead-lead (Pb-Pb) collisions at the C...
Single and pair top-quark production in proton-lead (p-Pb) and lead-lead (Pb-Pb) collisions at the C...
Single and pair top-quark production in proton–lead (p–Pb) and lead–lead (Pb–Pb) collisions at the ...
Single and pair top-quark production in proton–lead (p–Pb) and lead–lead (Pb–Pb) collisions at the C...
AbstractSingle and pair top-quark production in proton–lead (p–Pb) and lead–lead (Pb–Pb) collisions ...
Single and pair top-quark production in proton-lead (p-Pb) and lead-lead (Pb-Pb) collisions at the C...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
CMS Collaboration: et al.Ultrarelativistic heavy ion collisions recreate in the laboratory the therm...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Single and pair top-quark production in proton-lead (p-Pb) and lead-lead (Pb-Pb) collisions at the C...
Single and pair top-quark production in proton-lead (p-Pb) and lead-lead (Pb-Pb) collisions at the C...
Single and pair top-quark production in proton–lead (p–Pb) and lead–lead (Pb–Pb) collisions at the ...
Single and pair top-quark production in proton–lead (p–Pb) and lead–lead (Pb–Pb) collisions at the C...
AbstractSingle and pair top-quark production in proton–lead (p–Pb) and lead–lead (Pb–Pb) collisions ...
Single and pair top-quark production in proton-lead (p-Pb) and lead-lead (Pb-Pb) collisions at the C...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
CMS Collaboration: et al.Ultrarelativistic heavy ion collisions recreate in the laboratory the therm...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...
Ultrarelativistic heavy ion collisions recreate in the laboratory the thermodynamical conditions pre...