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GrainBoundaryCubicCrystalSymmetricTiltRelaxedEnergyVsAngle_bcc112_Fe__TE_187984704771_000

Title
A single sentence description.
Relaxed energy as a function of tilt angle for a 112 symmetric tilt grain boundary in bcc Fe v000
Description Compute grain boundary energy relation for a Fe 112 STGB
Species
The supported atomic species.
Fe
Disclaimer
A statement of applicability provided by the contributor, informing users of the intended use of this KIM Item.
None
Contributor Brandon Runnels
Maintainer Brandon Runnels
Published on KIM 2019
How to Cite

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

[1] Relaxed energy as a function of tilt angle for a 112 symmetric tilt grain boundary in bcc Fe v000. OpenKIM; 2019.

[2] Relaxed energy as a function of tilt angle for a symmetric tilt grain boundary within a cubic crystal v002. OpenKIM; 2019. doi:10.25950/4723cee7

[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

Click here to download the above citation in BibTeX format.
Funding Not available
Short KIM ID
The unique KIM identifier code.
TE_187984704771_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.
GrainBoundaryCubicCrystalSymmetricTiltRelaxedEnergyVsAngle_bcc112_Fe__TE_187984704771_000
Citable Link https://openkim.org/cite/TE_187984704771_000
KIM Item TypeTest
DriverGrainBoundaryCubicCrystalSymmetricTiltRelaxedEnergyVsAngle__TD_410381120771_002
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


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EAM_Dynamo_MendelevHanSrolovitz_2003Potential2_Fe__MO_769582363439_005 view 8294367
EAM_Dynamo_MendelevHanSrolovitz_2003Potential5_Fe__MO_942420706858_005 view 9284364
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MEAM_LAMMPS_JelinekGrohHorstemeyer_2012_AlSiMgCuFe__MO_262519520678_000 view 72526765
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MEAM_LAMMPS_Lee_2006_FeC__MO_856956178669_000 view 23473596
MEAM_LAMMPS_LeeJang_2007_FeH__MO_095610951957_000 view 24057709
MEAM_LAMMPS_LeeLee_2010_FeAl__MO_332211522050_000 view 32982991
MEAM_LAMMPS_LeeLeeKim_2006_FeN__MO_432861766738_000 view 23354158
MEAM_LAMMPS_LeeWirthShim_2005_FeCu__MO_063626065437_000 view 33603020
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MEAM_LAMMPS_WuLeeSu_2017_NiCrFe__MO_912636107108_000 view 35035297
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Measured in Millions of Whetstone Instructions (MWI)
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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)
Tersoff_LAMMPS_MuellerErhartAlbe_2007_Fe__MO_137964310702_003 view 79063224
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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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