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Bulk transport paths through defects in floating zone and Al flux grown SmB6

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Abstract
We investigate the roles of disorder on low-temperature transport in SmB6 crystals grown by both the Al flux and floating zone methods. We used the inverted resistance method with Corbino geometry to investigate whether low-temperature variations in the standard resistance plateau arise from a surface or a bulk channel in floating zone samples. The results show significant sample-dependent residual bulk conduction, in contrast to smaller amounts of residual bulk conduction previously observed in Al flux grown samples with Sm vacancies. We consider hopping in an activated impurity band as a possible source for the observed bulk conduction, but it is unlikely that the large residual bulk conduction seen in floating zone samples is solely due to Sm vacancies. We therefore propose that one-dimensional defects, or dislocations, contribute as well. Using chemical etching, we find evidence for dislocations in both flux and floating zone samples, with higher dislocation density in floating zone samples than in Al flux grown samples. In addition to the possibility of transport through one-dimensional dislocations, we also discuss our results in the context of recent theoretical models of SmB6.
Author(s)
Eo, Yun SukRakoski, AlexaSinha, ShriyaMihaliov, DmitriFuhrman, Wesley T.Saha, Shanta R.Rosa, Priscila F. S.Fisk, ZacharyHatnean, Monica CiomagaBalakrishnan, GeethaChamorro, Juan R.Phelan, W. AdamKoohpayeh, Seyed M.McQueen, Tyrel M.Kang, BoyounSong, Myung-sukCho, BeongkiFuhrer, Michael S.Paglione, JohnpierreKurdak, Cagliyan
Issued Date
2021-05
Type
Article
DOI
10.1103/PhysRevMaterials.5.055001
URI
https://scholar.gist.ac.kr/handle/local/11518
Publisher
AMER PHYSICAL SOC
Citation
PHYSICAL REVIEW MATERIALS, v.5, no.5
ISSN
2475-9953
Appears in Collections:
Department of Materials Science and Engineering > 1. Journal Articles
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