Published November 2012 | Version v1
Journal article

High-magnetic-field X-ray absorption and magnetic circular dichroism spectroscopy in the mixed-valent compound YbAgCu4

  • 1. Tokyo Univ., Inst. for Solid State Physics, Kashiwa, Chiba (Japan)
  • 2. Japan Atomic Energy Agency, Quantum Beam Science Directorate, Sayo, Hyogo (Japan)
  • 3. Japan Synchrotron Radiation Research Institute (JASRI/SPring-8), Sayo, Hyogo (Japan)
  • 4. Kyoto Univ., Graduate School of Science, Kyoto (Japan)
  • 5. High Energy Accelerator Research Organization, Photon Factory, Tsukuba, Ibaraki (Japan)

Description

The X-ray absorption and magnetic circular dichroism (XMCD) spectra at the L3 edge of Yb have been studied experimentally as well as theoretically in the mixed-valent heavy fermion compound YbAgCu4 at high magnetic fields and low temperatures. It has been found that the absorption spectra depend on the temperature as well as the magnetic field, suggesting a significant change in valence with the temperature and magnetic field. The magnetic field-temperature (H-T) phase boundary determined by the valence state is in very good agreement with that determined by the magnetization. It is clearly found that the metamagnetism of this compound is due to the field-induced valence transition. A distinct positive peak of the XMCD spectra appears in the vicinity of the white line of the absorption due to the Yb3+ state, while no feature is observed in the XMCD spectra corresponding to the Yb2+ state. On the other hand, a small negative XMCD peak was observed at a lower energy and the magnetic field dependence of the negative XMCD intensity was found to be qualitatively different from that of the main XMCD signal near the white line. By theoretical calculation, the quadrupole transition is found to explain the energy position and its peculiar magnetic field dependence. (author)

Availability note (English)

Available from http://dx.doi.org/10.1143/JPSJ.81.114702

Additional details

Identifiers

Publishing Information

Journal Title
Journal of the Physical Society of Japan
Journal Volume
81
Journal Issue
11
Journal Page Range
p. 114702.1-114702.11
ISSN
0031-9015

Optional Information

Notes
29 refs., 19 figs.