Statistical Analysis on the Structural Size of Simulated Thin Film Growth with Molecular Dynamics for Glancing Angle Incidence Deposition

Download statistics - Document (COUNTER):

Badorreck, H.; Jensen, L.; Ristau, D.; Jupé, M.: Statistical Analysis on the Structural Size of Simulated Thin Film Growth with Molecular Dynamics for Glancing Angle Incidence Deposition. In: Coatings : open access journal 11 (2021), Nr. 4, 469. DOI: https://doi.org/10.3390/coatings11040469

Repository version

To cite the version in the repository, please use this identifier: https://doi.org/10.15488/11209

Selected time period:

year: 
month: 

Sum total of downloads: 73




Thumbnail
Abstract: 
For the purpose of a deeper understanding of thin film growth, in the last two decades several groups developed models for simulation on the atomistic scale. Models using molecular dynamics as their simulation method already give results comparable to experiments, however statistical analysis of the simulations themselves are lacking so far, reasoned by the limits imposed by the computational power and parallelization that can only be used in lateral dimensions. With advancements of software and hardware, an increase in simulation speed by a factor of up to 10 can be reached. This allows either larger structures and/or more throughput of the simulations. The paper analyses the significance of increasing the structure size in lateral dimensions and also the repetition of simulations to gain more insights into the statistical fluctuation contained in the simulations and how well the coincidence with the experiment is. For that, glancing angle incidence deposition (GLAD) coatings are taken as an example. The results give important insights regarding the used interaction potential, the structure size and resulting important differences for the density, surface morphology, roughness and anisotropy. While larger structures naturally can reproduce the real world in more detail, the results show which structure sizes are needed for these aspects without wasting computational resources.
License of this version: CC BY 4.0 Unported
Document Type: Article
Publishing status: publishedVersion
Issue Date: 2021
Appears in Collections:Fakultät für Mathematik und Physik

distribution of downloads over the selected time period:

downloads by country:

pos. country downloads
total perc.
1 image of flag of Germany Germany 42 57.53%
2 image of flag of United States United States 16 21.92%
3 image of flag of China China 6 8.22%
4 image of flag of Tanzania, United Republic of Tanzania, United Republic of 2 2.74%
5 image of flag of Japan Japan 2 2.74%
6 image of flag of Taiwan Taiwan 1 1.37%
7 image of flag of Russian Federation Russian Federation 1 1.37%
8 image of flag of Indonesia Indonesia 1 1.37%
9 image of flag of Belize Belize 1 1.37%
10 image of flag of Australia Australia 1 1.37%

Further download figures and rankings:


Hinweis

Zur Erhebung der Downloadstatistiken kommen entsprechend dem „COUNTER Code of Practice for e-Resources“ international anerkannte Regeln und Normen zur Anwendung. COUNTER ist eine internationale Non-Profit-Organisation, in der Bibliotheksverbände, Datenbankanbieter und Verlage gemeinsam an Standards zur Erhebung, Speicherung und Verarbeitung von Nutzungsdaten elektronischer Ressourcen arbeiten, welche so Objektivität und Vergleichbarkeit gewährleisten sollen. Es werden hierbei ausschließlich Zugriffe auf die entsprechenden Volltexte ausgewertet, keine Aufrufe der Website an sich.

Search the repository


Browse