Difference between revisions of "TurboGAP"

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'''What's new?'''
 
'''What's new?'''
 
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'''02/04/2026''': On 23-24 March 2026, the '''TurboGAP''' team organized the [https://ocamm.fi/event/turbogap-school-2026 first TurboGAP School] at Aalto University.
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'''11/06/2025''': There are new [[potentials]] available for P, CH, CO and AuPt:H.
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'''10/06/2023''': There are new [[potentials]] available for Fe and Pt.
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'''01/04/2022''': There is a new [[tutorials|tutorial]] available: [[Simulating icosahedral gold clusters]].
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'''28/02/2022''': We have added a [[potential]] for elemental gold. Potentials for C, Si and Au are now publicly available for use with TurboGAP, and many more are under development.
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'''28/11/2021''': We have added a [[tutorials|tutorial]] on how to use barostating and van der Waals corrections in '''TurboGAP'''.
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'''10/05/2021''': The '''TurboGAP''' repo has been made public. Expansion of this website will now take place rapidly.
 
'''10/05/2021''': The '''TurboGAP''' repo has been made public. Expansion of this website will now take place rapidly.
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Latest revision as of 04:53, 3 April 2026

Turbogap logo.png

What's new?

02/04/2026: On 23-24 March 2026, the TurboGAP team organized the first TurboGAP School at Aalto University.

Group pic turbogap school.jpg


11/06/2025: There are new potentials available for P, CH, CO and AuPt:H.


10/06/2023: There are new potentials available for Fe and Pt.


01/04/2022: There is a new tutorial available: Simulating icosahedral gold clusters.


28/02/2022: We have added a potential for elemental gold. Potentials for C, Si and Au are now publicly available for use with TurboGAP, and many more are under development.


28/11/2021: We have added a tutorial on how to use barostating and van der Waals corrections in TurboGAP.


10/05/2021: The TurboGAP repo has been made public. Expansion of this website will now take place rapidly.

Welcome to the official TurboGAP website!

TurboGAP is a Fortran code that offers different levels of functionality for machine-learning driven atomistic simulation. The main functionality is provided via the soap_turbo library for efficient construction of accurate SOAP-type many-body atomic descriptors. These can also be used in combination with the QUIP/GAP code or with TurboGAP's native interface. Thanks to QUIP/GAP, TurboGAP's soap_turbo descriptors can be used to run MD simulations with LAMMPS. Together with the libraries and the native interface, we also provide a list of interatomic potentials to be used with the code.

TurboGAP is developed in Miguel Caro's group at Aalto University.

TurboGAP is free to use for non-commercial purposes, provided that you adhere to its license. If you want to use TurboGAP for commercial purposes, or purposes not covered by the TurboGAP non-commercial license, please contact the TurboGAP team.

Aalto logo.png AKA logo.jpg CSC logo.png Eu funded en.jpg