Ejemplo n.º 1
0
# -*- coding: utf-8 -*-
import matplotlib.pyplot as plt

from probfit.pdf import doublegaussian
from probfit.plotting import draw_normed_pdf

bound = (-10, 10)

arg = dict(mean=1.0, sigma_L=1, sigma_R=2)
draw_normed_pdf(doublegaussian, arg=arg, bound=bound, label=str(arg))

arg = dict(mean=1.0, sigma_L=0.5, sigma_R=3)
draw_normed_pdf(doublegaussian, arg=arg, bound=bound, label=str(arg))

plt.grid(True)
plt.legend().get_frame().set_alpha(0.5)
Ejemplo n.º 2
0
# -*- coding: utf-8 -*-
import matplotlib.pyplot as plt

from probfit.pdf import doublecrystalball
from probfit.plotting import draw_normed_pdf

bound = (-2, 12)

arg = dict(alpha=1.0, alpha2=2.0, n=2.0, n2=4, mean=5, sigma=1)
draw_normed_pdf(doublecrystalball,
                arg=arg,
                bound=bound,
                label=str(arg),
                density=True)

arg = dict(alpha=2, alpha2=1, n=7.0, n2=10.0, mean=5, sigma=1)
draw_normed_pdf(doublecrystalball,
                arg=arg,
                bound=bound,
                label=str(arg),
                density=True)

plt.grid(True)
plt.legend().get_frame().set_alpha(0.5)
Ejemplo n.º 3
0
# -*- coding: utf-8 -*-
import matplotlib.pyplot as plt

from probfit.pdf import argus
from probfit.plotting import draw_normed_pdf

bound = (5.22, 5.30)

arg = dict(c=5.29, chi=1.0, p=0.5)
draw_normed_pdf(argus, arg=arg, bound=bound, label=str(arg), density=True)

arg = dict(c=5.29, chi=1.0, p=0.4)
draw_normed_pdf(argus, arg=arg, bound=bound, label=str(arg), density=True)

arg = dict(c=5.29, chi=2.0, p=0.5)
draw_normed_pdf(argus, arg=arg, bound=bound, label=str(arg), density=True)

plt.grid(True)
plt.legend().get_frame().set_alpha(0.5)
Ejemplo n.º 4
0
from probfit.pdf import novosibirsk
from probfit.plotting import draw_normed_pdf
import matplotlib.pyplot as plt

bound = (5.22, 5.30)

arg = dict(width=0.005, peak=5.28, tail=0.2)
draw_normed_pdf(novosibirsk, arg=arg, bound=bound, label=str(arg), density=True)

arg = dict(width=0.002, peak=5.28, tail=0.2)
draw_normed_pdf(novosibirsk, arg=arg, bound=bound, label=str(arg), density=True)

arg = dict(width=0.005, peak=5.28, tail=0.1)
draw_normed_pdf(novosibirsk, arg=arg, bound=bound, label=str(arg), density=True)

plt.grid(True)
plt.legend(loc='upper left').get_frame().set_alpha(0.5)
Ejemplo n.º 5
0
from probfit.pdf import crystalball
from probfit.plotting import draw_normed_pdf
import matplotlib.pyplot as plt

bound = (5.22, 5.30)

arg = dict(alpha=1., n=2., mean=5.28, sigma=0.01)
draw_normed_pdf(crystalball, arg=arg, bound=bound, label=str(arg), density=True)

arg = dict(alpha=0.5, n=10., mean=5.28, sigma=0.005)
draw_normed_pdf(crystalball, arg=arg, bound=bound, label=str(arg), density=True)

plt.grid(True)
plt.legend().get_frame().set_alpha(0.5)
Ejemplo n.º 6
0
from probfit.pdf import cruijff
from probfit.plotting import draw_normed_pdf
import matplotlib.pyplot as plt

bound = (5.22, 5.30)

arg = dict(m_0=5.28, sigma_L=0.005, sigma_R=0.005, alpha_R=0., alpha_L=0.1)
draw_normed_pdf(cruijff, arg=arg, bound=bound, label=str(arg), density=True)

arg = dict(m_0=5.28, sigma_L=0.005, sigma_R=0.005, alpha_R=0., alpha_L=0.5)
draw_normed_pdf(cruijff, arg=arg, bound=bound, label=str(arg), density=True)

arg = dict(m_0=5.28, sigma_L=0.002, sigma_R=0.005, alpha_R=0., alpha_L=0.01)
draw_normed_pdf(cruijff, arg=arg, bound=bound, label=str(arg), density=True)

plt.grid(True)
plt.legend(loc='upper left', prop={'size': 8}).get_frame().set_alpha(0.5)
Ejemplo n.º 7
0
from probfit.pdf import novosibirsk
from probfit.plotting import draw_normed_pdf
import matplotlib.pyplot as plt

bound = (5.22, 5.30)

arg = dict(width=0.005, peak=5.28, tail=0.2)
draw_normed_pdf(novosibirsk,
                arg=arg,
                bound=bound,
                label=str(arg),
                density=True)

arg = dict(width=0.002, peak=5.28, tail=0.2)
draw_normed_pdf(novosibirsk,
                arg=arg,
                bound=bound,
                label=str(arg),
                density=True)

arg = dict(width=0.005, peak=5.28, tail=0.1)
draw_normed_pdf(novosibirsk,
                arg=arg,
                bound=bound,
                label=str(arg),
                density=True)

plt.grid(True)
plt.legend(loc='upper left').get_frame().set_alpha(0.5)
Ejemplo n.º 8
0
from probfit.pdf import doublegaussian
from probfit.plotting import draw_normed_pdf
import matplotlib.pyplot as plt

bound = (-10, 10)

arg = dict(mean=1.0, sigma_L=1, sigma_R=2)
draw_normed_pdf(doublegaussian, arg=arg, bound=bound, label=str(arg))

arg = dict(mean=1.0, sigma_L=0.5, sigma_R=3)
draw_normed_pdf(doublegaussian, arg=arg, bound=bound, label=str(arg))

plt.grid(True)
plt.legend().get_frame().set_alpha(0.5)