English

Charge-Density-Wave Order and Multiple Magnetic Transitions in Divalent Europium Compound EuAl$_4$

Strongly Correlated Electrons 2021-05-20 v1

Abstract

Multiple transition phenomena in divalent Eu compound EuAl4_4 with the tetragonal structure were investigated via the single-crystal time-of-flight neutron Laue technique. At 30.0 K below a charge-density-wave (CDW) transition temperature of TCDWT_{\rm CDW} = 140 K, superlattice peaks emerge near nuclear Bragg peaks described by an ordering vector qCDWq_{\rm CDW}=(0 0 δc{\delta}_c) with δc{\delta}_c{\sim}0.19. In contrast, magnetic peaks appear at q2=(δ2δ20)q_2 = ({\delta}_2 {\delta}_2 0) with δ2{\delta}_2 = 0.085 in a magnetic-ordered phase at 13.5 K below TN1T_{\rm N1} = 15.4 K. By further cooling to below TN3T_{\rm N3} = 12.2 K, the magnetic ordering vector changes into q1=(δ100)q_1 = ({\delta}_1 0 0) with δ1{\delta}_1 = 0.17 at 11.5 K and slightly shifts to δ1{\delta}_1 = 0.194 at 4.3 K. No distinct change in the magnetic Bragg peak was detected at TN2T_{\rm N2}=13.2 K and TN4T_{\rm N4}=10.0 K. The structural modulation below TCDWT_{\rm CDW} with qCDWq_{\rm CDW} is characterized by the absence of the superlattice peak in the (0 0 ll) axis. As a similar CDW transition was observed in SrAl4_4, the structural modulation with qCDWq_{\rm CDW} could be mainly ascribed to the displacement of Al ions within the tetragonal abab-plane. Complex magnetic transitions are in stark contrast to a simple collinear magnetic structure in isovalent EuGa4_4. This could stem from different electronic structures with the CDW transition between two compounds.

Keywords

Cite

@article{arxiv.2104.07935,
  title  = {Charge-Density-Wave Order and Multiple Magnetic Transitions in Divalent Europium Compound EuAl$_4$},
  author = {Koji Kaneko and Takuro Kawasaki and Koji Munakata and Akiko Nakao and Takayasu Hanashima and Ryoji Kiyanagi and Takashi Ohhara and Masato Hedo and Takao Nakama and Yoshichika Ōnuki},
  journal= {arXiv preprint arXiv:2104.07935},
  year   = {2021}
}

Comments

6 pages, 3 figures, accepted for publication in J. Phys. Soc. Jpn