MINERvA TKI vs A

Contents

GroupFigures
𝛿𝛼𝑇overlay / <90Β° area / shape
𝛿𝑝𝑇overlay / shape
𝛿𝑝𝑇 fine binsoverlay / shape
𝛿𝑝𝑇π‘₯overlay / shape
𝛿𝑝𝑇𝑦overlay / shape
π›Ώπœ‘π‘‡overlay / shape
𝛿𝑝𝐿overlay / shape
𝑝𝑛overlay / shape / 𝑝𝑛<1 GeV/c overlay / 𝑝𝑛<1 GeV/c shape

TKI variables

Data and binning notes

The plots use the official MINERvA ancillary ROOT file anc/tki_release.root from the arXiv source package. The fine-bin 𝛿𝑝𝑇 result is taken directly from the dedicated absolute_xsec_dpt_fine_* histograms in that release. All displayed errors are the total bin errors stored in the release histograms.

𝛿𝛼𝑇

Overlay
FigureΒ 1

Absolute differential cross section per nucleon for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

Area-normalized 𝛿𝛼𝑇<90Β°
FigureΒ 2

Equal interpolated integrals below 𝛿𝛼𝑇=90 degrees for CH, C, H2O, Fe, and Pb. The normalization integral is calculated from a piecewise-linear interpolation of the differential cross sections through the bin centers, not from a simple sum of unweighted bin contents. Source: [1].

Downloads: PDF / EPS

Shape
FigureΒ 3

Width-weighted unit-area shape comparison for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

𝛿𝑝𝑇

Overlay
FigureΒ 4

Absolute differential cross section per nucleon for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

Shape
FigureΒ 5

Width-weighted unit-area shape comparison for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

𝛿𝑝𝑇 fine bins

Overlay
FigureΒ 6

Absolute differential cross section per nucleon for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

Shape
FigureΒ 7

Width-weighted unit-area shape comparison for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

𝛿𝑝𝑇π‘₯

Overlay
FigureΒ 8

Absolute differential cross section per nucleon for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

Shape
FigureΒ 9

Width-weighted unit-area shape comparison for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

𝛿𝑝𝑇𝑦

Overlay
FigureΒ 10

Absolute differential cross section per nucleon for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

Shape
FigureΒ 11

Width-weighted unit-area shape comparison for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

π›Ώπœ‘π‘‡

Overlay
FigureΒ 12

Absolute differential cross section per nucleon for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

Shape
FigureΒ 13

Width-weighted unit-area shape comparison for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

𝛿𝑝𝐿

Overlay
FigureΒ 14

Absolute differential cross section per nucleon for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

Shape
FigureΒ 15

Width-weighted unit-area shape comparison for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

𝑝𝑛

Full-range overlay
FigureΒ 16

Absolute differential cross section per nucleon for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

Full-range shape
FigureΒ 17

Width-weighted unit-area shape comparison for CH, C, H2O, Fe, and Pb. Source: [1].

Downloads: PDF / EPS

𝑝𝑛<1 GeV/c overlay
FigureΒ 18

Absolute differential cross section per nucleon for CH, C, H2O, Fe, and Pb restricted to 𝑝𝑛<1 GeV/c. Source: [1].

Downloads: PDF / EPS

𝑝𝑛<1 GeV/c shape
FigureΒ 19

Width-weighted unit-area shape comparison restricted to 𝑝𝑛<1 GeV/c. Source: [1].

Downloads: PDF / EPS

Bibliography

  • [1] J. Kleykamp and others, Measurement of the A dependence of the muon neutrino charged-current quasielasticlike cross section as a function of muon and proton kinematics at π‘™βˆ πΈπ‘›π‘’π‘Ÿβˆ π‘ im6 GeV, Phys. Rev. D 112, 52005 (2025).