TY - JOUR
T1 - Evaluation of β-FeSi2/Si-interface using Ag-coating on Si surface
AU - Akiyama, Kensuke
AU - Motomura, Shunichi
AU - Hayashi, Gohei
AU - Funakubo, Hiroshi
AU - Itakura, Masaru
N1 - Copyright:
Copyright 2014 Elsevier B.V., All rights reserved.
PY - 2013/12
Y1 - 2013/12
N2 - β-FeSi2 films preferred to (100)-, (010)/(001)- and (101)/(110)-orientation on Ag-coated Si(100), Ag-coated Si(110) and Ag-coated Si(111) substrates, respectively. The full width at half maximum of the rocking curve of the β-FeSi2 800, 040 /004 and 202 /220 for the (100)-, (010)/(001)- and (101)/(110)-oriented β-FeSi2 films were 0.59°, 0.20° and 0.18°, indicating the good perfect quality of the crystal orientation. The photoluminescence intensity of the (101)/(110)-orientated β-FeSi2 films on Ag-coated Si(111) substrates was larger than the others, when the samples were indirectly excited by Ar-ion laser irradiation to the Si substrate side. The hetero-interface constituted with the β-FeSi2 (101)/(110) plane and Si(111) plane seems to have the lowest density of non-radiative center. From the transmission electron microscope analysis, the hetero-interface constituted with the β-FeSi2 (101)/(110) plane and Si(111) plane is considered as thermodynamically stable.
AB - β-FeSi2 films preferred to (100)-, (010)/(001)- and (101)/(110)-orientation on Ag-coated Si(100), Ag-coated Si(110) and Ag-coated Si(111) substrates, respectively. The full width at half maximum of the rocking curve of the β-FeSi2 800, 040 /004 and 202 /220 for the (100)-, (010)/(001)- and (101)/(110)-oriented β-FeSi2 films were 0.59°, 0.20° and 0.18°, indicating the good perfect quality of the crystal orientation. The photoluminescence intensity of the (101)/(110)-orientated β-FeSi2 films on Ag-coated Si(111) substrates was larger than the others, when the samples were indirectly excited by Ar-ion laser irradiation to the Si substrate side. The hetero-interface constituted with the β-FeSi2 (101)/(110) plane and Si(111) plane seems to have the lowest density of non-radiative center. From the transmission electron microscope analysis, the hetero-interface constituted with the β-FeSi2 (101)/(110) plane and Si(111) plane is considered as thermodynamically stable.
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U2 - 10.1002/pssc.201300331
DO - 10.1002/pssc.201300331
M3 - Article
AN - SCOPUS:84890799808
SN - 1862-6351
VL - 10
SP - 1684
EP - 1687
JO - Physica Status Solidi C: Conferences
JF - Physica Status Solidi C: Conferences
IS - 12
ER -