The Precision Proton Spectrometer (PPS) of the CMS and TOTEM experiments collected 107.7 fb-1 in proton-proton (pp) collisions at the LHC at 13 TeV (Run 2). This paper describes the key features of the PPS alignment and optics calibrations, the proton reconstruction procedure, as well as the detector efficiency and the performance of the PPS simulation. The reconstruction and simulation are validated using a sample of (semi)exclusive dilepton events. The performance of PPS has proven the feasibility of continuously operating a near-beam proton spectrometer at a high luminosity hadron collider.
The first measurement of the top quark pair ($$ \textrm{t}\overline{\textrm{t}} $$
t
t
¯
) production cross section in proton-proton collisions at $$ \sqrt{s} $$
s
= 13.6 TeV is presented. Data recorded with the CMS detector at the CERN LHC in Summer 2022, corresponding to an integrated luminosity of 1.21 fb−1, are analyzed. Events are selected with one or two charged leptons (electrons or muons) and additional jets. A maximum likelihood fit is performed in event categories defined by the number and flavors of the leptons, the number of jets, and the number of jets identified as originating from b quarks. An inclusive $$ \textrm{t}\overline{\textrm{t}} $$
t
t
¯
production cross section of 881 ± 23 (stat + syst) ± 20 (lumi) pb is measured, in agreement with the standard model prediction of $$ {924}_{-40}^{+32} $$
924
−
40
+
32
pb.
Two new cases of primary mediastinal seminoma are presented and 126 cases from the literature are analysed. Radiotherapy, alone or combined with surgery, is thought by some authors to be the treatment of choice and the role of chemotherapy is uncertain. We propose a classification by which it is possible to compare various therapeutic approaches and to establish their value.
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