AACSD: An atomistic analyzer for crystal structure and defects

Main Author: Ballantyne, John
Other Authors: Liu, Z. R., Zhang, R. F.
Format: Dataset
Terbitan: Mendeley , 2017
Subjects:
Online Access: https:/data.mendeley.com/datasets/3hrmbbgp6s
ctrlnum 0.17632-3hrmbbgp6s.1
fullrecord <?xml version="1.0"?> <dc><creator>Ballantyne, John</creator><title>AACSD: An atomistic analyzer for crystal structure and defects</title><publisher>Mendeley</publisher><description>We have developed an efficient command-line program named AACSD (Atomistic Analyzer for Crystal Structure and Defects) for the post-analysis of atomic configurations generated by various atomistic simulation codes. The program has implemented not only the traditional filter methods like the excess potential energy (EPE), the centrosymmetry parameter (CSP), the common neighbor analysis (CNA), the common neighborhood parameter (CNP), the bond angle analysis (BAA), and the neighbor distance analysis (NDA), but also the newly developed ones including the modified centrosymmetry parameter (m-CSP), the orientation imaging map (OIM) and the local crystallographic orientation (LCO). The newly proposed OIM and LCO methods have been extended for all three crystal structures including face centered cubic, body centered cubic and hexagonal close packed. More specially, AACSD can be easily used for the atomistic analysis of metallic nanocomposite with each phase to be analyzed independently, which provides a unique pathway to capture their dynamic evolution of various defects on the fly. In this paper, we provide not only a throughout overview on various theoretical methods and their implementation into AACSD program, but some critical evaluations, specific testing and applications, demonstrating the capability of the program on each functionality.</description><subject>Computational Physics</subject><contributor>Liu, Z. R.</contributor><contributor>Zhang, R. F.</contributor><type>Other:Dataset</type><identifier>10.17632/3hrmbbgp6s.1</identifier><rights>GNU Public License Version 3</rights><rights>http://www.gnu.org/licenses/gpl-3.0.en.html</rights><relation>https:/data.mendeley.com/datasets/3hrmbbgp6s</relation><date>2017-10-11T12:48:16Z</date><recordID>0.17632-3hrmbbgp6s.1</recordID></dc>
format Other:Dataset
Other
author Ballantyne, John
author2 Liu, Z. R.
Zhang, R. F.
title AACSD: An atomistic analyzer for crystal structure and defects
publisher Mendeley
publishDate 2017
topic Computational Physics
url https:/data.mendeley.com/datasets/3hrmbbgp6s
contents We have developed an efficient command-line program named AACSD (Atomistic Analyzer for Crystal Structure and Defects) for the post-analysis of atomic configurations generated by various atomistic simulation codes. The program has implemented not only the traditional filter methods like the excess potential energy (EPE), the centrosymmetry parameter (CSP), the common neighbor analysis (CNA), the common neighborhood parameter (CNP), the bond angle analysis (BAA), and the neighbor distance analysis (NDA), but also the newly developed ones including the modified centrosymmetry parameter (m-CSP), the orientation imaging map (OIM) and the local crystallographic orientation (LCO). The newly proposed OIM and LCO methods have been extended for all three crystal structures including face centered cubic, body centered cubic and hexagonal close packed. More specially, AACSD can be easily used for the atomistic analysis of metallic nanocomposite with each phase to be analyzed independently, which provides a unique pathway to capture their dynamic evolution of various defects on the fly. In this paper, we provide not only a throughout overview on various theoretical methods and their implementation into AACSD program, but some critical evaluations, specific testing and applications, demonstrating the capability of the program on each functionality.
id IOS7969.0.17632-3hrmbbgp6s.1
institution Universitas Islam Indragiri
affiliation onesearch.perpusnas.go.id
institution_id 804
institution_type library:university
library
library Teknologi Pangan UNISI
library_id 2816
collection Artikel mulono
repository_id 7969
city INDRAGIRI HILIR
province RIAU
shared_to_ipusnas_str 1
repoId IOS7969
first_indexed 2020-04-08T08:30:07Z
last_indexed 2020-04-08T08:30:07Z
recordtype dc
_version_ 1686587755048468480
score 17.538404