JARVIS-FF NIST Disclaimer

Structural formula: Sm

Force-field: Al90Sm10_MendelevM_2014.eam.fs

Space group : P2_1/m

JARVIS ID: JLMP-1423

Download input files

Elastic tensor (GPa)

Elastic tensor for the conventional cell of the system were calculated with LAMMPS in.elastic script at 0 K [Source] . Similar script can be used for temperature dependent elastic constants and will be available here soon. WARNING! Please note that the starting lattice parameters of crystal structures were taken from density functional theory (DFT) and not from experiments. Generic minimization parameters were chosen for LAMMPS run rather than testing them for each individual case such as energy convergence criterion and so on. Hence, there are chances that the calculation gets trapped in a local energy minima. Please read carefully the assumptions taken during calculations in the in.elastic script and use the data at your own risk

128.7 31.3 18.0 -0.0 0.0 24.8
31.3 150.3 33.0 0.0 -0.0 19.7
18.0 33.0 89.8 0.0 -0.0 25.4
-0.0 0.0 0.0 27.2 9.6 0.0
0.0 -0.0 -0.0 9.6 12.4 -0.0
24.8 19.7 25.4 0.0 -0.0 -20.0

Bv: 59.3 GPa

Gv: 23.0 GPa

Vacancy-formation energy (eV)

Vacancy formation energies were calculated by deleting the symmterically distinct atoms in the system [Source]. In the table, vacancy forming element, its multiplicity, and defect-formation energy are given. The reference element cohesive energies were calculated with the most stable structure for the element found on materials project database. Defect structures were constructed with the fully-relaxed bulk system as input. For defect-structures energetics calculations, constant volume ensemble was used. We impose the defect structures to be at least 1.5 nm large in all directions.

Element Mult. Value
Sm 2 2.35 Download cif file
Sm 2 2.412 Download cif file

Surface energy (J/m2)

Surface energies were calculated for symmterically distinct crystal surfaces . In the table, (hkl) indices and surface enegies are given. For surface-structure energetics, constant volume ensemble was used. We impose the slab thickness to be at least 2 nm and vaccum size of 2.5 nm. The maximum miller index is taken as 3.

Surface Value
(0 1 0) 1.077 Download cif file
(1 0 0) 1.132 Download cif file
(1 2 0) 1.133 Download cif file
(1 1 0) 1.139 Download cif file
(3 2 0) 1.14 Download cif file
(3 1 -3) 1.141 Download cif file
(2 1 -2) 1.161 Download cif file
(2 1 0) 1.171 Download cif file
(3 1 0) 1.175 Download cif file
(0 2 1) 1.181 Download cif file
(2 3 0) 1.189 Download cif file
(1 1 -1) 1.212 Download cif file
(2 0 1) 1.22 Download cif file
(2 0 -3) 1.22 Download cif file
(1 0 -1) 1.227 Download cif file
(1 3 0) 1.227 Download cif file
(1 0 -2) 1.228 Download cif file
(3 0 2) 1.231 Download cif file
(3 0 1) 1.24 Download cif file
(2 3 -1) 1.241 Download cif file
(3 3 -1) 1.244 Download cif file
(3 1 3) 1.244 Download cif file
(2 3 -2) 1.245 Download cif file
(0 3 2) 1.247 Download cif file
(3 0 -2) 1.248 Download cif file
(0 0 1) 1.251 Download cif file
(3 1 -2) 1.256 Download cif file
(3 2 -1) 1.258 Download cif file
(2 0 -1) 1.264 Download cif file
(2 2 -1) 1.265 Download cif file
(3 1 1) 1.266 Download cif file
(2 1 -1) 1.274 Download cif file
(3 1 2) 1.28 Download cif file
(3 0 -1) 1.281 Download cif file
(2 1 3) 1.283 Download cif file
(3 1 -1) 1.286 Download cif file
(2 0 3) 1.288 Download cif file
(0 3 1) 1.295 Download cif file
(2 1 2) 1.296 Download cif file
(1 0 -3) 1.296 Download cif file
(3 2 -2) 1.297 Download cif file
(3 2 -3) 1.298 Download cif file
(2 1 1) 1.305 Download cif file
(3 3 -2) 1.308 Download cif file
(3 3 1) 1.311 Download cif file
(1 0 1) 1.316 Download cif file
(1 0 2) 1.317 Download cif file
(0 2 3) 1.321 Download cif file
(3 2 2) 1.327 Download cif file
(1 0 3) 1.33 Download cif file
(2 2 1) 1.331 Download cif file
(3 2 3) 1.331 Download cif file
(2 1 -3) 1.331 Download cif file
(1 1 1) 1.346 Download cif file
(1 2 -1) 1.349 Download cif file
(2 2 3) 1.349 Download cif file
(0 1 3) 1.353 Download cif file
(0 1 2) 1.357 Download cif file
(3 2 1) 1.359 Download cif file
(1 3 3) 1.36 Download cif file
(2 3 3) 1.362 Download cif file
(1 3 -1) 1.364 Download cif file
(1 1 -3) 1.366 Download cif file
(0 1 1) 1.366 Download cif file
(1 3 -3) 1.366 Download cif file
(3 3 2) 1.367 Download cif file
(1 1 -2) 1.368 Download cif file
(1 2 2) 1.368 Download cif file
(2 3 1) 1.37 Download cif file
(2 3 2) 1.373 Download cif file
(1 3 1) 1.376 Download cif file
(1 3 2) 1.376 Download cif file
(1 1 2) 1.377 Download cif file
(2 2 -3) 1.38 Download cif file
(2 3 -3) 1.381 Download cif file
(1 2 -2) 1.385 Download cif file
(1 2 1) 1.385 Download cif file
(1 2 3) 1.394 Download cif file
(1 3 -2) 1.399 Download cif file
(1 1 3) 1.406 Download cif file
(1 2 -3) 1.427 Download cif file

Phonon

Phonons were obtained by making an interface of JARVIS-FF with Phonopy package at 0 K [Source] . For deformed-structures, constant volume ensemble was used. The deofrmed structures were taken of at least 1.5 nm size in all directions. The band-indices for phonon bandstructure was obtained with Pymatgen. The phonon representation were obtained with phonopy. "I" and "R" denotes infrared and Raman active modes respectively

Visualize Phonons here
Phonon mode (cm-1) Representation
-0.003922564 Bu I
-0.0022673924 Au I
-6.93317e-05 Bu I
19.5096502712 Au I
37.2768799235 Ag R
41.6802918266 Bu I
48.5846804516 Au I
59.0592245796 Ag R
75.3558605269 Bu I
79.4548638421 Bu I
106.860254275 Bg R
130.002092484 Au I
All phonon mode at Gamma point (cm-1)
-0.0039225641
-0.0022673924
-6.93352e-05
19.5096502712
37.2768799235
41.6802918266
48.5846804516
59.0592245796
75.3558605269
79.4548638421
106.860254275
130.002092484

See also

Links to other databases or papers are provided below

JVASP-1005

mp-69

Energy above hull from mp (eV): 0.0