Profiles: a statistic of one variable in bins of another¶
rf.profile draws the weighted mean of y per bin of x with its standard
error (ROOT's TProfile); statistic="std" gives the standard deviation instead, the
usual resolution-versus-variable plot when y is a residual.

import rootfig as rf
style = rf.Style()
rf.profile(
[signal, zjets],
rf.Variable("sum(Jet_pt)", bins=(16, 0, 800), label=r"$H_T$", unit="GeV"),
met,
selection="nJet >= 1",
style=style,
)

import rootfig as rf
style = rf.Style(experiment="ATLAS", status="Internal", lumi=140, com=13.6)
rf.profile(
[signal, zjets],
rf.Variable("sum(Jet_pt)", bins=(16, 0, 800), label=r"$H_T$", unit="GeV"),
met,
selection="nJet >= 1",
style=style,
)

import rootfig as rf
style = rf.Style(experiment="CMS", status="Preliminary", lumi=138, com=13.6)
rf.profile(
[signal, zjets],
rf.Variable("sum(Jet_pt)", bins=(16, 0, 800), label=r"$H_T$", unit="GeV"),
met,
selection="nJet >= 1",
style=style,
)

import rootfig as rf
style = rf.Style(experiment="LHCb", status="Preliminary", lumi=9, com=13.6)
rf.profile(
[signal, zjets],
rf.Variable("sum(Jet_pt)", bins=(16, 0, 800), label=r"$H_T$", unit="GeV"),
met,
selection="nJet >= 1",
style=style,
)

import rootfig as rf
style = rf.Style(experiment="ALICE", status="Preliminary")
rf.profile(
[signal, zjets],
rf.Variable("sum(Jet_pt)", bins=(16, 0, 800), label=r"$H_T$", unit="GeV"),
met,
selection="nJet >= 1",
style=style,
)

import rootfig as rf
style = rf.Style(experiment="DUNE", status="Preliminary")
rf.profile(
[signal, zjets],
rf.Variable("sum(Jet_pt)", bins=(16, 0, 800), label=r"$H_T$", unit="GeV"),
met,
selection="nJet >= 1",
style=style,
)
Setup
The code reads the toy dataset. In a checkout of rootfig, python examples/gallery writes it to examples/out/ in a few seconds; run the code inside that directory.
It uses these samples and variables, shared by the gallery examples (see Samples, variables, cuts and styles):
signal = rf.Sample("signal.root", tree="events", label="Signal", weight="weight", scale=0.03)
zjets = rf.Sample("background.root", tree="events", label="Z + jets", weight="weight")
diboson = rf.Sample("diboson.root", tree="events", label="Diboson", weight="weight", scale=0.15)
data = rf.Sample("data.root", tree="events", label="Data", is_data=True)
mc = [zjets, diboson, signal] # stacked bottom to top
pt = rf.Variable("Muon_pt", bins=(30, 0, 300), label=r"$p_T^{\mu}$", unit="GeV")
mll = rf.Variable("m_ll", bins=(70, 50, 260), label=r"$m_{\ell\ell}$", unit="GeV")
met = rf.Variable("MET", bins=(40, 0, 400), label=r"$E_T^{miss}$", unit="GeV")