English

Optical, transport and magnetic properties of new compound CeCd3P3

Strongly Correlated Electrons 2016-04-15 v1

Abstract

We have found that CeCd3_{3}P3_{3} crystallizes into a hexagonal ScAl3_{3}C3_{3}-type structure. The optical, transport and magnetic properties of CeCd3_{3}P3_{3} were investigated by measuring the diffuse reflectance, electrical resistivity and magnetization. CeCd3_{3}P3_{3} is a semiconductor with the fundamental band gap of approximately 0.75 eV. The 4ff electrons of Ce3+^{3+} ions are well localized but do not show long range order down to 0.48 K, presumably due to the geometrical frustration of Ce atoms. The magnetic ordering temperature is possibly lower than that of isostructural CeZn3_{3}P3_{3} (0.75 K). Because several ff-electron compounds with the ScAl3_{3}C3_{3}-type structure are quantum spin systems, CeCd3_{3}P3_{3} may be a candidate of quantum spin liquid. On the other hand, the relatively large band gap compared to approximately 0.4 eV in CeZn3_{3}P3_{3}, would not be intimate with the observation of photoinduced Kondo effect, providing a potentially new range of applications of devices based on the Kondo effect.

Keywords

Cite

@article{arxiv.1604.04016,
  title  = {Optical, transport and magnetic properties of new compound CeCd3P3},
  author = {Shohei Higuchi and Yuki Noshima and Naoki Shirakawa and Masami Tsubota and Jiro Kitagawa},
  journal= {arXiv preprint arXiv:1604.04016},
  year   = {2016}
}

Comments

Accepted for the publication in Materials Research Express