root / ase / lattice / monoclinic.py @ 1
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1 | 1 | tkerber | """Function-like object creating monoclinic lattices.
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2 | 1 | tkerber |
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3 | 1 | tkerber | The following lattice creator is defined:
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4 | 1 | tkerber | SimpleMonoclinic
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5 | 1 | tkerber | BaseCenteredMonoclinic
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6 | 1 | tkerber | """
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7 | 1 | tkerber | |
8 | 1 | tkerber | from ase.lattice.triclinic import TriclinicFactory |
9 | 1 | tkerber | import numpy as np |
10 | 1 | tkerber | from ase.data import reference_states as _refstate |
11 | 1 | tkerber | |
12 | 1 | tkerber | |
13 | 1 | tkerber | class SimpleMonoclinicFactory(TriclinicFactory): |
14 | 1 | tkerber | "A factory for creating simple monoclinic lattices."
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15 | 1 | tkerber | # The name of the crystal structure in ChemicalElements
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16 | 1 | tkerber | xtal_name = "monoclinic"
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17 | 1 | tkerber | |
18 | 1 | tkerber | def make_crystal_basis(self): |
19 | 1 | tkerber | "Make the basis matrix for the crystal unit cell and the system unit cell."
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20 | 1 | tkerber | # First convert the basis specification to a triclinic one
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21 | 1 | tkerber | if type(self.latticeconstant) == type({}): |
22 | 1 | tkerber | self.latticeconstant['beta'] = 90 |
23 | 1 | tkerber | self.latticeconstant['gamma'] = 90 |
24 | 1 | tkerber | else:
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25 | 1 | tkerber | if len(self.latticeconstant) == 4: |
26 | 1 | tkerber | self.latticeconstant = self.latticeconstant + (90,90) |
27 | 1 | tkerber | else:
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28 | 1 | tkerber | raise ValueError, "Improper lattice constants for monoclinic crystal." |
29 | 1 | tkerber | |
30 | 1 | tkerber | TriclinicFactory.make_crystal_basis(self)
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31 | 1 | tkerber | |
32 | 1 | tkerber | SimpleMonoclinic = SimpleMonoclinicFactory() |
33 | 1 | tkerber | |
34 | 1 | tkerber | class BaseCenteredMonoclinicFactory(SimpleMonoclinicFactory): |
35 | 1 | tkerber | # The natural basis vectors of the crystal structure
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36 | 1 | tkerber | int_basis = np.array([[1, -1, 0], |
37 | 1 | tkerber | [1, 1, 0], |
38 | 1 | tkerber | [0, 0, 2]]) |
39 | 1 | tkerber | basis_factor = 0.5
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40 | 1 | tkerber | |
41 | 1 | tkerber | # Converts the natural basis back to the crystallographic basis
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42 | 1 | tkerber | inverse_basis = np.array([[1, 1, 0], |
43 | 1 | tkerber | [-1, 1, 0], |
44 | 1 | tkerber | [0, 0, 1]]) |
45 | 1 | tkerber | inverse_basis_factor = 1.0
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46 | 1 | tkerber | |
47 | 1 | tkerber | BaseCenteredMonoclinic = BaseCenteredMonoclinicFactory() |