First principles calculation of ϵ-phase of solid oxygen

The electronic structures of "-phase of solid oxygen (O2)4 are studied within the framework of densityfunctional theory. The intriguing molecule has been known to have magnetic properties at room temperature by applying pressure. Nevertheless, until now there was no evidence of band structure s...

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Published in:Acta Physica Polonica A
Main Author: Kamaruddin K.H.; Abedin A.F.Z.; Zabidi N.A.; Yahya M.Z.A.; Taib M.F.M.; Rosli A.N.
Format: Conference paper
Language:English
Published: Polish Academy of Sciences 2016
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84971441877&doi=10.12693%2fAPhysPolA.129.468&partnerID=40&md5=c0a44f826e56ea54fe1bb63aeabacb61
id 2-s2.0-84971441877
spelling 2-s2.0-84971441877
Kamaruddin K.H.; Abedin A.F.Z.; Zabidi N.A.; Yahya M.Z.A.; Taib M.F.M.; Rosli A.N.
First principles calculation of ϵ-phase of solid oxygen
2016
Acta Physica Polonica A
129
4
10.12693/APhysPolA.129.468
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84971441877&doi=10.12693%2fAPhysPolA.129.468&partnerID=40&md5=c0a44f826e56ea54fe1bb63aeabacb61
The electronic structures of "-phase of solid oxygen (O2)4 are studied within the framework of densityfunctional theory. The intriguing molecule has been known to have magnetic properties at room temperature by applying pressure. Nevertheless, until now there was no evidence of band structure studied in the antiferromagnetic behaviour of (O2)4. We report a comparison study for spin and non-spin polarization orbital which suggests that this ferromagnetic configuration of (O2)4 could not be seen experimentally, and antiferromagnetic configuration of (O2)4 was seen at higher pressure of about 10 GPa. The antiferromagnetic state transforms into the superconducting state as the sample temperature decreases. The results can serve as a useful approximation in studying general features of the electronic structure. The (O2)4 clusters are reported in the Raman study, having significant absorption at 1516 cm-1 below infrared region.
Polish Academy of Sciences
05874246
English
Conference paper
All Open Access; Gold Open Access
author Kamaruddin K.H.; Abedin A.F.Z.; Zabidi N.A.; Yahya M.Z.A.; Taib M.F.M.; Rosli A.N.
spellingShingle Kamaruddin K.H.; Abedin A.F.Z.; Zabidi N.A.; Yahya M.Z.A.; Taib M.F.M.; Rosli A.N.
First principles calculation of ϵ-phase of solid oxygen
author_facet Kamaruddin K.H.; Abedin A.F.Z.; Zabidi N.A.; Yahya M.Z.A.; Taib M.F.M.; Rosli A.N.
author_sort Kamaruddin K.H.; Abedin A.F.Z.; Zabidi N.A.; Yahya M.Z.A.; Taib M.F.M.; Rosli A.N.
title First principles calculation of ϵ-phase of solid oxygen
title_short First principles calculation of ϵ-phase of solid oxygen
title_full First principles calculation of ϵ-phase of solid oxygen
title_fullStr First principles calculation of ϵ-phase of solid oxygen
title_full_unstemmed First principles calculation of ϵ-phase of solid oxygen
title_sort First principles calculation of ϵ-phase of solid oxygen
publishDate 2016
container_title Acta Physica Polonica A
container_volume 129
container_issue 4
doi_str_mv 10.12693/APhysPolA.129.468
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84971441877&doi=10.12693%2fAPhysPolA.129.468&partnerID=40&md5=c0a44f826e56ea54fe1bb63aeabacb61
description The electronic structures of "-phase of solid oxygen (O2)4 are studied within the framework of densityfunctional theory. The intriguing molecule has been known to have magnetic properties at room temperature by applying pressure. Nevertheless, until now there was no evidence of band structure studied in the antiferromagnetic behaviour of (O2)4. We report a comparison study for spin and non-spin polarization orbital which suggests that this ferromagnetic configuration of (O2)4 could not be seen experimentally, and antiferromagnetic configuration of (O2)4 was seen at higher pressure of about 10 GPa. The antiferromagnetic state transforms into the superconducting state as the sample temperature decreases. The results can serve as a useful approximation in studying general features of the electronic structure. The (O2)4 clusters are reported in the Raman study, having significant absorption at 1516 cm-1 below infrared region.
publisher Polish Academy of Sciences
issn 05874246
language English
format Conference paper
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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