OpenFlatus.py 3.74 KB
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# -*- coding: iso-8859-15 -*-

import Tkinter as tk
from Elements import *
from numpy import *
from pylab import *
from spectro import *

#######################################
# Initial parameters
param = dict(dedx=287. ,Theta_out=70., dW2dx=35000., E0= 100000., Theta_in=0., FWHM0=300.)
ionb = dict(Z=1, mass=1.0079)

#######################################
# Calculation callback
# Defines parameters

def init_calc():
    param['dedx'] = float(Entrydedx.get())
    param['dW2dx'] = float(EntrydW2dx.get())
    param['Theta_out'] = float(EntryT_out.get())
    param['Theta_in'] = float(EntryT_in.get())
    param['E0'] = float(EntryE0.get())
    param['FWHM0'] = float(EntryFWHM0.get())
    ionb['mass'] = float(Entryionmass.get())
    ionb['Z'] = float(EntryionZ.get())

    data=spectro_espalhamento(float(EntryEmin.get()),float(EntryEmax.get()),20)
    #data.addelements2(['profHf.dat','profO.dat'],param,0.9,'gaussiana',0.01)
    data.sweepelements(param, 'gaussiana', ionb)
    data.plot()

#######################################
# Main window

root = tk.Tk()
root.minsize(385,355)
root.title('Open Flatus')

Label1 = tk.Label(root, text = 'Elements', relief='raised', bd=2)
Label1.grid(column=0, row=9)
Label2 = tk.Label(root, text = 'Parameters', relief='raised', bd=2)
Label2.grid(column=0, row=0)
Label3 = tk.Label(root, text = 'Ion parameters', relief='raised', bd=2)
Label3.grid(column=0, row=2)

CalcButton = tk.Button(root, text = 'Calculate', command = init_calc, bd=4, width=20, height=4)
CalcButton.grid(column=10, row=10)

#######################################
# Frames

Eframe = tk.Frame(root)
Eframe.grid(column=0, row=10)

Pframel = tk.Frame(root)
Pframel.grid(column=0, row=1, sticky='w')
Pframee = tk.Frame(root)
Pframee.grid(column=0, row=1, sticky='e')

Iframel = tk.Frame(root, width=8)
Iframel.grid(column=0, row=3, sticky='w')
Iframee = tk.Frame(root, width=12)
Iframee.grid(column=0, row=3, sticky='e')

#######################################
# Elements callback

elemw(Eframe)

#######################################
# Parameters
# Labels
Labeldedx = tk.Label(Pframel, width=8, text='dƐ/dx')
LabeldW2dx = tk.Label(Pframel, width=8, text='dω²/dx')
LabelT_out = tk.Label(Pframel, width=8, text='θ out')
LabelT_in = tk.Label(Pframel, width=8, text='θ in')
LabelE0 = tk.Label(Pframel, width=8, text='E0')
LabelFWHM0 = tk.Label(Pframel, width=8, text='FWHM0')
LabelEmin = tk.Label(Pframel, width=8, text='Emin')
LabelEmax = tk.Label(Pframel, width=8, text='Emax')
Labeldedx.pack()
LabeldW2dx.pack()
LabelT_out.pack()
LabelT_in.pack()
LabelE0.pack()
LabelFWHM0.pack()
LabelEmin.pack()
LabelEmax.pack()

# Entries
Entrydedx = tk.Entry(Pframee, width=12)
EntrydW2dx = tk.Entry(Pframee, width=12)
EntryT_out = tk.Entry(Pframee, width=12)
EntryT_in = tk.Entry(Pframee, width=12)
EntryE0 = tk.Entry(Pframee, width=12)
EntryFWHM0 = tk.Entry(Pframee, width=12)
EntryEmin = tk.Entry(Pframee, width=12)
EntryEmax = tk.Entry(Pframee, width=12)
Entrydedx.pack()
EntrydW2dx.pack()
EntryT_out.pack()
EntryT_in.pack()
EntryE0.pack()
EntryFWHM0.pack()
EntryEmin.pack()
EntryEmax.pack() 

#Ion
Labelionmass = tk.Label(Iframel, width=8, text='Mass')
LabelionZ = tk.Label(Iframel, width=8, text='Z')
Labelionmass.pack()
LabelionZ.pack()
Entryionmass = tk.Entry(Iframee, width=12)
EntryionZ = tk.Entry(Iframee, width=12)
Entryionmass.pack()
EntryionZ.pack()

#Initial values
Entrydedx.insert(0,param['dedx'])
EntrydW2dx.insert(0,param['dW2dx'])
EntryT_out.insert(0,param['Theta_out'])
EntryT_in.insert(0,param['Theta_in'])
EntryE0.insert(0,param['E0'])
EntryFWHM0.insert(0,param['FWHM0'])
EntryEmin.insert(0,50000)
EntryEmax.insert(0,100000) 
Entryionmass.insert(0, ionb['mass'])
EntryionZ.insert(0, ionb['Z'])

#######################################

root.mainloop()

#######################################