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Conduction-band electronic states of YbInCu4studied by photoemission and soft x-ray absorption spectroscopies

Authors :
Kojiro Mimura
Masaki Taniguchi
Yoshiyuki Yamashita
Yukiharu Takeda
Hiroyuki Maso
Takuo Ohkochi
Koichi Hiraoka
Hidenao Kurihara
Yuji Saitoh
Yuki Utsumi
Hideki Yoshikawa
Tamio Oguchi
Kenichi Kojima
Komei Tobimatsu
Hirofumi Namatame
Shin-ichi Fujimori
Kenya Shimada
Shigenori Ueda
Keisuke Kobayashi
Hitoshi Sato
Source :
Physical Review B. 84
Publication Year :
2011
Publisher :
American Physical Society (APS), 2011.

Abstract

We have studied conduction-band (CB) electronic states of a typical valence-transition compound YbInCu4 by means of temperature-dependent hard x-ray photoemission spectroscopy (HX-PES) of the Cu 2p3/2 and In 3d5/2 core states taken at hν = 5.95 keV, soft x-ray absorption spectroscopy (XAS) of the Cu 2p3/2 core absorption region around hν ∼ 935 eV, and soft x-ray photoemission spectroscopy (SX-PES) of the valence band at the Cu 2p3/2 absorption edge of hν = 933.0 eV. With decreasing temperature below the valence transition at TV = 42 K, we have found that (1) the Cu 2p3/2 and In 3d5/2 peaks in the HX-PES spectra exhibit the energy shift toward the lower binding-energy side by ∼40 and ∼30 meV, respectively, (2) an energy position of the Cu 2p3/2 main absorption peak in the XAS spectrum is shifted toward higher photon-energy side by ∼100 meV, with an appearance of a shoulder structure below the Cu 2p3/2 main absorption peak, and (3) an intensity of the Cu L3VV Auger spectrum is abruptly enhanced. These experimental results suggest that the Fermi level of the CB-derived density of states is shifted toward the lower binding-energy side. We have described the valence transition in YbInCu4 in terms of the charge transfer from the CB to Yb 4f states.

Details

ISSN :
1550235X and 10980121
Volume :
84
Database :
OpenAIRE
Journal :
Physical Review B
Accession number :
edsair.doi.dedup.....524d2e89b2ba8b971534b12c534e2c3e
Full Text :
https://doi.org/10.1103/physrevb.84.115143