Example #1
0
def test_compare_placzek_implementation_intensities():
    """Intensities of different Placzek implementations
    should be similar"""
    atoms = H2Morse()
    name = 'placzek'
    pz = Placzek(atoms, H2MorseExcitedStatesAndCalculator,
                 gsname=name, exname=name, txt=None)
    pz.run()
    om = 1
    pzi = pz.absolute_intensity(omega=om)[-1]

    # Profeta using frozenset
    pr = Profeta(atoms, H2MorseExcitedStatesAndCalculator,
                 approximation='Placzek',
                 gsname=name, exname=name, txt=None)
    pri = pr.absolute_intensity(omega=om)[-1]
    assert pzi == pytest.approx(pri, 1e-3)
    
    # Profeta using overlap
    name = 'profeta'
    pr = Profeta(atoms, H2MorseExcitedStatesAndCalculator,
                 approximation='Placzek',
                 gsname=name, exname=name,
                 overlap=lambda x, y: x.overlap(y),
                 txt=None)
    pr.run()
    pro = pr.absolute_intensity(omega=om)[-1]
    assert pro == pytest.approx(pri, 1e-3)
Example #2
0
def test_overlap():
    """Test equality with and without overlap"""
    atoms = H2Morse()
    name = 'profeta'
    name = 'rrmorse'
    nstates = 3
    po = Profeta(atoms,
                 H2MorseExcitedStatesAndCalculator,
                 exkwargs={'nstates': nstates},
                 approximation='Placzek',
                 overlap=lambda x, y: x.overlap(y),
                 gsname=name,
                 exname=name,
                 txt='-')
    po.run()

    om = 1
    poi = po.absolute_intensity(omega=om)[-1]

    pr = Profeta(atoms,
                 H2MorseExcitedStatesAndCalculator,
                 exkwargs={'nstates': nstates},
                 approximation='Placzek',
                 gsname=name,
                 exname=name,
                 txt=None)
    pri = pr.absolute_intensity(omega=om)[-1]

    print('overlap', pri, poi, poi / pri)
    assert pri == pytest.approx(poi, 1e-4)
Example #3
0
def test_profeta_run():
    atoms = H2Morse()
    name = 'profeta'
    pr = Profeta(atoms,
                 H2MorseExcitedStatesAndCalculator,
                 gsname=name,
                 exname=name,
                 txt='-')
    pr.run()
Example #4
0
def test_compare_placzek_albrecht_intensities():
    atoms = H2Morse()
    name = 'rrmorse'
    pr = Profeta(atoms,
                 H2MorseExcitedStatesAndCalculator,
                 approximation='Placzek',
                 gsname=name,
                 exname=name,
                 overlap=lambda x, y: x.overlap(y),
                 txt=None)
    pr.run()

    om = 1
    pri, ali = 0, 0
    """Albrecht A and P-P are approximately equal"""

    pr.approximation = 'p-p'
    pri = pr.absolute_intensity(omega=om)[-1]
    al = Albrecht(atoms,
                  H2MorseExcitedStatesAndCalculator,
                  gsname=name,
                  exname=name,
                  overlap=True,
                  approximation='Albrecht A',
                  txt=None)
    ali = al.absolute_intensity(omega=om)[-1]
    print('pri, ali', pri, ali)
    assert pri == pytest.approx(ali, 1e-2)
    """Albrecht B+C and Profeta are approximately equal"""

    pr.approximation = 'Profeta'
    pri = pr.absolute_intensity(omega=om)[-1]
    al.approximation = 'Albrecht BC'
    ali = al.absolute_intensity(omega=om)[-1]
    print('pri, ali', pri, ali)
    assert pri == pytest.approx(ali, 1e-2)
    """Albrecht and Placzek are approximately equal"""

    pr.approximation = 'Placzek'
    pri = pr.absolute_intensity(omega=om)[-1]
    al.approximation = 'Albrecht'
    ali = al.absolute_intensity(omega=om)[-1]
    print('pri, ali', pri, ali)
    assert pri == pytest.approx(ali, 1e-2)