1550.
Electronic structure of the Fe-Cu-Nb-Si-B alloys by x-ray absorption spectroscopy
Cheng, Y. H.; Jan, J. C.; Chiou, J. W.; 彭維鋒; Pong, W. F.; Tsai, M. H.; Hseih, H. H.; Chang, Y. K.; Dann, T. E.; 錢凡之; Chien, F. Z.; 鄭伯昆; Tseng, P. K.; Leu, M. S.; Chin, T. S.
,
2000-07-03
[Graduate Institute & Department of Physics] Journal Article Applied Physics Letters 77(1), pp.115-117
a transi-
tion from the Si 1s core level to the unoccupied Si 3p-
derived states. The general line shape of the features in the
nc-FCNSB spectra
1551.
Element-specific magnetic properties of the epitaxial NiFe/Cr/NiFe trilayers
Lee, I. F.; Shen, M. Y.; Lay, Y. Y.; Jan, J. C.; Chiou, J. W.; Tsai, H. M.; Pong, W. F.; Tsai, M. H.; Hsieh, H. H.; Lin, H. J.; Lee, J. F.; Ku, C. A.; Huang, J. C. A.
,
2003-05-05
[Graduate Institute & Department of Physics] Journal Article Applied Physics Letters 82(18), pp.3062-3064
. The two white-line regions, labeled L3 and L2 in Figs.
1 and 2, represent the electron transitions from the Ni and
Fe 2p3/2 and 2p1/2 core levels
1552.
Si K and Co L3 XANES study of thin film CoSi2 
彭維鋒; Pong, Way-faung; Chang, Y. K.; Mayanovic, R. A.; Ho, G. H.; Lin, H. J.; Ko, S. H.; 鄭伯昆; Tseng, P. K.; Chen, C. T.; Hirya, A.; Watanabe, M.
,
1996-05-01
[Graduate Institute & Department of Physics] Journal Article Journal of Electron Spectroscopy and Related Phenomena 78, pp.107
. PES studies indicate that
the binding energies of silicides shift with different
stoichoometries[6]. Core-hole[9] and chargo transfer
effects
1554.
Electronic and magnetic properties of the Ag-doped Fe3O4 films studied by x-ray absorption spectroscopy 
Liu, S. H.; Tsai, H. M.; Pao, C. W.; Chiou, J. W.; Ling, D. C.; Pong, Way-faung; Tsai, M. H.; Lin, H. J.; Jang, L. Y.; Lee, J. F.; Hsu, J. H.; Wang, W. J.; Hsu, C. J.
,
2006-08-28
[Graduate Institute & Department of Physics] Journal Article, [Graduate Institute & Department of Chemistry] Journal Article Applied Physics Letters 89(9), 092112(3page)
spectra
from t1h2e Ag 2p core level to unoccupied Ag 4d/5s-derived of these Agx–Fe3O4 films are similar to those of Fe3O4
states. As shown
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