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GroundStateCrystalStructure_Pt__TE_013224771855_000

Title
A single sentence description.
Reference elemental energy for Pt v000
Description Returns the reference elemental energy for Pt.
Species
The supported atomic species.
Pt
Disclaimer
A statement of applicability provided by the contributor, informing users of the intended use of this KIM Item.
Computer generated
Contributor Eric Fuemmeler
Maintainer Eric Fuemmeler
Published on KIM 2025
How to Cite

This Test is archived in OpenKIM [1-4].

[1] Reference elemental energy for Pt v000 [Internet]. OpenKIM; 2025. Available from: https://openkim.org/cite/TE_013224771855_000

[2] Fuemmeler E. Test driver for computing reference ground state structures and energies for each element at zero temperature and applied stress v000. OpenKIM; 2025. doi:10.25950/fa5ed729

[3] Tadmor EB, Elliott RS, Sethna JP, Miller RE, Becker CA. The potential of atomistic simulations and the Knowledgebase of Interatomic Models. JOM. 2011;63(7):17. doi:10.1007/s11837-011-0102-6

[4] Elliott RS, Tadmor EB. Knowledgebase of Interatomic Models (KIM) Application Programming Interface (API). OpenKIM; 2011. doi:10.25950/ff8f563a

Funding Not available
Short KIM ID
The unique KIM identifier code.
TE_013224771855_000
Extended KIM ID
The long form of the KIM ID including a human readable prefix (100 characters max), two underscores, and the Short KIM ID. Extended KIM IDs can only contain alpha-numeric characters (letters and digits) and underscores and must begin with a letter.
GroundStateCrystalStructure_Pt__TE_013224771855_000
Citable Link https://openkim.org/cite/TE_013224771855_000
KIM Item TypeTest
DriverGroundStateCrystalStructure__TD_099540502402_000
Properties
Properties as defined in kimspec.edn. These properties are inhereted from the Test Driver.
KIM API Version2.3
Simulator Name
The name of the simulator as defined in kimspec.edn. This Simulator Name is inhereted from the Test Driver.
ase
Programming Language(s)
The programming languages used in the code and the percentage of the code written in each one.
100.00% Python


EAM_Dynamo__MD_120291908751_006
Model Test Results Link to Test Results page Benchmark time
Usertime multiplied by the Whetstone Benchmark. This number can be used (approximately) to compare the performance of different models independently of the architecture on which the test was run.

Measured in Millions of Whetstone Instructions (MWI)
EAM_Dynamo_AdamsFoilesWolfer_1989Universal6_Pt__MO_388062184209_001 view 38947
EAM_Dynamo_FoilesBaskesDaw_1986Universal3_Pt__MO_757342646688_001 view 32040
EAM_Dynamo_OBrienBarrPrice_2018_PtAu__MO_946831081299_001 view 38765
EAM_Dynamo_VoterChen_1993_Pt__MO_101785259970_001 view 28320
EAM_Dynamo_ZhouJohnsonWadley_2004_CuAgAuNiPdPtAlPbFeMoTaWMgCoTiZr__MO_870117231765_001 view 28440
EAM_Dynamo_ZhouJohnsonWadley_2004NISTretabulation_Pt__MO_601539325066_001 view 28020
EAM_Dynamo_ZhouWadleyJohnson_2001_Pt__MO_102190350384_006 view 28380
EAM_QuinticClampedSpline__MD_532469991695_004
Model Test Results Link to Test Results page Benchmark time
Usertime multiplied by the Whetstone Benchmark. This number can be used (approximately) to compare the performance of different models independently of the architecture on which the test was run.

Measured in Millions of Whetstone Instructions (MWI)
EAM_QuinticClampedSpline_Kim_2021_PtAu__MO_463728687265_001 view 27420
EMT_Asap__MD_128315414717_004
Model Test Results Link to Test Results page Benchmark time
Usertime multiplied by the Whetstone Benchmark. This number can be used (approximately) to compare the performance of different models independently of the architecture on which the test was run.

Measured in Millions of Whetstone Instructions (MWI)
EMT_Asap_Standard_JacobsenStoltzeNorskov_1996_AlAgAuCuNiPdPt__MO_115316750986_001 view 32264
EMT_Asap_Standard_JacobsenStoltzeNorskov_1996_Pt__MO_637493005914_001 view 27420
LJ__MD_414112407348_003
Model Test Results Link to Test Results page Benchmark time
Usertime multiplied by the Whetstone Benchmark. This number can be used (approximately) to compare the performance of different models independently of the architecture on which the test was run.

Measured in Millions of Whetstone Instructions (MWI)
LJ_ElliottAkerson_2015_Universal__MO_959249795837_003 view 41135
MEAM_LAMMPS__MD_249792265679_002
Model Test Results Link to Test Results page Benchmark time
Usertime multiplied by the Whetstone Benchmark. This number can be used (approximately) to compare the performance of different models independently of the architecture on which the test was run.

Measured in Millions of Whetstone Instructions (MWI)
MEAM_LAMMPS_JeongLee_2020_PtC__MO_716623333967_002 view 40041
MEAM_LAMMPS_KimLee_2006_PtFe__MO_343168101490_002 view 33120
MEAM_LAMMPS_KimSeolJi_2017_PtAl__MO_793141037706_002 view 36942
MEAM_LAMMPS_KimSeolJi_2017_PtCo__MO_545073984441_002 view 39616
MEAM_LAMMPS_KimSeolJi_2017_PtCu__MO_070797404269_002 view 31413
MEAM_LAMMPS_KimSeolJi_2017_PtMo__MO_831380044253_002 view 32220
MEAM_LAMMPS_KimSeolJi_2017_PtNi__MO_020840179467_002 view 30198
MEAM_LAMMPS_KimSeolJi_2017_PtTi__MO_280985530673_002 view 30540
MEAM_LAMMPS_KimSeolJi_2017_PtV__MO_912978207512_002 view 29820
MEAM_LAMMPS_LeeShimBaskes_2003_Pt__MO_534993486058_001 view 28440
Tersoff_LAMMPS__MD_077075034781_005
Model Test Results Link to Test Results page Benchmark time
Usertime multiplied by the Whetstone Benchmark. This number can be used (approximately) to compare the performance of different models independently of the architecture on which the test was run.

Measured in Millions of Whetstone Instructions (MWI)
Tersoff_LAMMPS_AlbeNordlundAverback_2002_PtC__MO_500121566391_004 view 26400


  • No Errors associated with this Test



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