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StackingFaultFccCrystal_Au_0bar__TE_843792000528_001

Title
A single sentence description.
Stacking and twinning fault energies for fcc Au
Description Intrinsic and extrinsic stacking fault energies, unstable stacking fault energy, unstable twinning energy, stacking fault energy as a function of fractional displacement, and gamma surface for fcc Au at zero temperature and pressure.
Species
The supported atomic species.
Au
Contributor SubrahmanyamPattamatta
Maintainer SubrahmanyamPattamatta
Author Subrahmanyam Pattamatta
Publication Year 2018
Source Citations
A citation to primary published work(s) that describe this KIM Item.

Bernstein N, Tadmor EB (2004) Tight-binding calculations of stacking energies and twinnability in fcc metals. Physical Review B 69(9):094116. doi:10.1103/PhysRevB.69.094116

Item Citation Click here to download a citation in BibTeX format.
Short KIM ID
The unique KIM identifier code.
TE_843792000528_001
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.
StackingFaultFccCrystal_Au_0bar__TE_843792000528_001
Citable Link https://openkim.org/cite/TE_843792000528_001
KIM Item TypeTest
DriverStackingFaultFccCrystal__TD_228501831190_001
Properties
Properties as defined in kimspec.edn. These properties are inhereted from the Test Driver.
KIM API Version2.0
Simulator Name
The name of the simulator as defined in kimspec.edn. This Simulator Name is inhereted from the Test Driver.
lammps
Programming Language(s)
The programming languages used in the code and the percentage of the code written in each one.
100.00% Python
Previous Version StackingFaultFccCrystal_Au_0bar__TE_843792000528_000


Models

No Driver
Model Test Results Link to Test Results page Benchmark time
Usertime muliplied 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)
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EAM_Dynamo__MD_120291908751_005
Model Test Results Link to Test Results page Benchmark time
Usertime muliplied 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_Ackland_1987_Au__MO_754413982908_000 view 4341518
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EAM_Dynamo_Pun_2017_Au__MO_188701096956_000 view 6373044
EAM_Dynamo_Zhakhovsky_2009_Au__MO_173248269481_000 view 7643481
EAM_Dynamo_ZhouJohnsonWadley_2004_Au__MO_468407568810_005 view 658865
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EAM_Dynamo_ZhouWadleyJohnson_2001NISTretabulation_Au__MO_684444719999_000 view 660053
EMT_Asap__MD_128315414717_004
Model Test Results Link to Test Results page Benchmark time
Usertime muliplied 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 9240640
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