-    PLAGIOCLASE     -    (Na,Ca)(Si,Al)4O8

OLIGOCLASE - Theoretical structure, term in the plagioclase series treated as ideal solid solution using alchemical pseudopotentials. The crystal structure is fully relaxed (both unit cell parameters and atomic positions under symmetry constraints) starting from an experimental structure similar to the one reported in AMCSD 

Crystal Structure 


Because of the translational symmetry all the calculations are performed in the primitive unit cell and not in the conventional unit cell. The following information regarding the structure is given with respect to this primitive unit cell, which sometimes can take an unintuitive shape.

Symmetry (experimental): 

Space group:  P-1 
Lattice parameters (Å):  7.599  7.533  6.081 
Angles (°):  106.12  101.66  114.92 

Symmetry (theoretical): 

Space group:  P-1 
Lattice parameters (Å):  7.5984  7.5262  7.0384 
Angles (°):  105.9  101.9  115.0 

Cell contents: 

Number of atoms:  26 
Number of atom types: 
Chemical composition: 

Atomic positions (theoretical):

Na:  0.2601  0.2729  0.1293 
Si:  0.8408  0.1755  0.2178 
Si:  0.1885  0.8223  0.2274 
Si:  0.5790  0.7992  0.3242 
Si:  0.8066  0.5640  0.3485 
O:  0.8709  0.1356  0.9883 
O:  0.5981  0.5832  0.2777 
O:  0.7092  0.9333  0.2043 
O:  0.9662  0.6722  0.2384 
O:  0.7222  0.3080  0.2677 
O:  0.3297  0.7085  0.2214 
O:  0.0807  0.3106  0.3918 
O:  0.3216  0.0598  0.4211 
Na:  0.7399  0.7271  0.8707 
Si:  0.1592  0.8245  0.7822 
Si:  0.8115  0.1777  0.7726 
Si:  0.4210  0.2008  0.6758 
Si:  0.1934  0.4360  0.6515 
O:  0.1291  0.8644  0.0117 
O:  0.4019  0.4168  0.7223 
O:  0.2908  0.0667  0.7957 
O:  0.0338  0.3278  0.7616 
O:  0.2778  0.6920  0.7323 
O:  0.6703  0.2915  0.7786 
O:  0.9193  0.6894  0.6082 
O:  0.6784  0.9402  0.5789 
Atom type 

We have listed here the reduced coordinates of all the atoms in the primitive unit cell.
It is enough to know only the position of the atoms from the assymetrical unit cell and then use the symmetry to build the whole crystal structure.

Visualization of the crystal structure: 

Size:

Nx:  Ny:  Nz: 
You can define the size of the supercell to be displayed in the jmol panel as integer translations along the three crys­tallo­gra­phic axis.
Please note that the structure is represented using the pri­mi­tive cell, and not the conventional one.
   

Dielectric Properties 


We define:

  • The Born effective charges, also called dynamical charges, are tensors that correspond to the energy derivative with respect to atomic displacements and electric fields or, equivalently, to the change in atomic force due to an electric field: The sum of the Born effective charges of all nuclei in one cell must vanish, element by element, along each of the three directions of the space.
  • The dielectric tensors are the energy derivative with respect to two electric fields. They also relate the induced polarization to the external electric field.

Born effective charges (Z): 

Na: 1.3559 0.0077 -0.0132 
0.0039 1.4149 0.0246 
-0.0150 0.0233 1.3515 
Eig. Value: 1.3662 1.4229 1.3333 
Si: 2.9402 0.4008 -0.0444 
0.1248 2.7004 -0.0220 
-0.1161 0.0125 3.1858 
Eig. Value: 3.0683 2.5291 3.2290 
Si: 3.0450 -0.3253 -0.1049 
-0.1183 2.7719 0.0521 
-0.0878 -0.1077 3.2385 
Eig. Value: 3.1279 2.6394 3.2881 
Si: 2.9336 -0.1911 0.0768 
0.0008 3.2419 0.0208 
0.0875 -0.0194 2.8229 
Eig. Value: 2.9540 3.2699 2.7744 
Si: 2.8912 0.1054 0.0271 
0.0153 3.2569 -0.0616 
0.0751 0.0960 2.8298 
Eig. Value: 2.9095 3.2681 2.8004 
O: -1.3637 -0.0692 0.5465 
-0.0665 -1.2858 0.1358 
0.6104 0.1495 -2.4771 
Eig. Value: -1.1173 -1.2690 -2.7404 
O: -1.3088 -0.0144 -0.1353 
-0.0281 -2.5767 0.0551 
-0.1445 0.0410 -1.1572 
Eig. Value: -1.3921 -2.5785 -1.0721 
O: -2.4110 -0.3611 0.2897 
-0.3639 -1.2676 -0.0071 
0.3484 0.0100 -1.3344 
Eig. Value: -2.5915 -1.1128 -1.3088 
O: -2.5290 0.3293 0.3529 
0.3246 -1.2251 -0.0527 
0.3850 -0.0735 -1.3392 
Eig. Value: -2.7083 -1.1423 -1.2427 
O: -1.4479 -0.4646 -0.1799 
-0.3683 -2.1380 -0.2675 
-0.1623 -0.2896 -1.2540 
Eig. Value: -1.2643 -2.4241 -1.1516 
O: -1.4645 0.5396 -0.2000 
0.4316 -2.2006 0.1699 
-0.2067 0.2014 -1.2694 
Eig. Value: -1.3167 -2.4960 -1.1218 
O: -1.3242 0.1208 -0.2804 
0.2016 -1.3627 0.2904 
-0.3628 0.2500 -2.2513 
Eig. Value: -1.1743 -1.3246 -2.4393 
O: -1.3168 -0.0779 -0.3348 
-0.1576 -1.3294 -0.3378 
-0.4112 -0.2936 -2.3458 
Eig. Value: -1.1915 -1.2415 -2.5589 
Na: 1.3559 0.0077 -0.0132 
0.0039 1.4149 0.0246 
-0.0150 0.0233 1.3515 
Eig. Value: 1.3662 1.4229 1.3333 
Si: 2.9402 0.4008 -0.0444 
0.1248 2.7004 -0.0220 
-0.1161 0.0125 3.1858 
Eig. Value: 3.0683 2.5291 3.2290 
Si: 3.0450 -0.3253 -0.1049 
-0.1183 2.7719 0.0521 
-0.0878 -0.1077 3.2385 
Eig. Value: 3.1279 2.6394 3.2881 
Si: 2.9336 -0.1911 0.0768 
0.0008 3.2419 0.0208 
0.0875 -0.0194 2.8229 
Eig. Value: 2.9540 3.2699 2.7744 
Si: 2.8912 0.1054 0.0271 
0.0153 3.2569 -0.0616 
0.0751 0.0960 2.8298 
Eig. Value: 2.9095 3.2681 2.8004 
O: -1.3637 -0.0692 0.5465 
-0.0665 -1.2858 0.1358 
0.6104 0.1495 -2.4771 
Eig. Value: -1.1173 -1.2690 -2.7404 
O: -1.3088 -0.0144 -0.1353 
-0.0281 -2.5767 0.0551 
-0.1445 0.0410 -1.1572 
Eig. Value: -1.3921 -2.5785 -1.0721 
O: -2.4110 -0.3611 0.2897 
-0.3639 -1.2676 -0.0071 
0.3484 0.0100 -1.3344 
Eig. Value: -2.5915 -1.1128 -1.3088 
O: -2.5290 0.3293 0.3529 
0.3246 -1.2251 -0.0527 
0.3850 -0.0735 -1.3392 
Eig. Value: -2.7083 -1.1423 -1.2427 
O: -1.4479 -0.4646 -0.1799 
-0.3683 -2.1380 -0.2675 
-0.1623 -0.2896 -1.2540 
Eig. Value: -1.2643 -2.4241 -1.1516 
O: -1.4645 0.5396 -0.2000 
0.4316 -2.2006 0.1699 
-0.2067 0.2014 -1.2694 
Eig. Value: -1.3167 -2.4960 -1.1218 
O: -1.3242 0.1208 -0.2804 
0.2016 -1.3627 0.2904 
-0.3628 0.2500 -2.2513 
Eig. Value: -1.1743 -1.3246 -2.4393 
O: -1.3168 -0.0779 -0.3348 
-0.1576 -1.3294 -0.3378 
-0.4112 -0.2936 -2.3458 
Eig. Value: -1.1915 -1.2415 -2.5589 
Atom type 

Dielectric tensors: 

 
Ɛ2.4141 0.0000 0.0000 
0.0000 2.4411 0.0000 
0.0000 0.0000 2.4354 
Eig. Value: 2.4140 2.4413 2.4354 
Refractive index (N): 1.5538 -0.0000 -0.0000 
-0.0000 1.5624 -0.0000 
-0.0000 -0.0000 1.5606 
Eig. Value: 1.5537 1.5625 1.5606 
Ɛ00.0000 0.0000 0.0000 
0.0000 0.0000 0.0000 
0.0000 0.0000 0.0000 
Eig. Value: 0.0000 0.0000 0.0000