English

Spin Dynamics and Light-Induced Effects in EuZn$_2$P$_2$

Strongly Correlated Electrons 2025-06-10 v1

Abstract

The magnetic spin dynamics and optical properties of EuZn2_2P2_2 are studied. Single crystals grown by the Sn-flux method crystallize in the P3m1P\overline{3}m1 (No.~164) space group and order antiferromagnetically at TN=23.5T_N=23.5~K. 151^{151}Eu M\"ossbauer spectroscopy confirms the presence of the Eu2+^{2+} oxidation state only and the magnetic moment angle relative to the cc-axis is θ=46(3)\theta=46(3)\textdegree. Temperature-dependent electron spin resonance (ESR) measurements reveal that spin-spin interactions predominantly govern the spin relaxation mechanisms, as evidenced by the linewidth behavior (ΔH\Delta H). Positive gg-shifts (Δg)\Delta g) for HabH \parallel ab indicate the presence of local electron polarization. The ESR data support the formation of anisotropic magnetic polarons, which trap spin carriers and contribute to increased electrical resistance. Angular-dependent ESR spectra at room temperature display anisotropic behavior in both Δg(ϕ)\Delta g(\phi) and ΔH(ϕ)\Delta H(\phi), with a dominant three-dimensional component C3DC_{3D}, indicative of robust interlayer coupling and antiferromagnetic fluctuations. Under light illumination, a small broadening of ΔH\Delta H is observed. Furthermore, a photovoltaic effect is identified in EuZn2_2P2_2, with photodetector performance metrics suggesting promising capabilities for future optoelectronic devices.

Keywords

Cite

@article{arxiv.2506.07681,
  title  = {Spin Dynamics and Light-Induced Effects in EuZn$_2$P$_2$},
  author = {M. Dutra and G. G. Vasques and P. C. Sabino and J. G. Dias and J. F. Oliveira and M. A. A. Heringer and M. Cabrera-Baez and E. Baggio-Saitovitch and A. R. V. Benvenho and M. A. Avila and J. Munevar},
  journal= {arXiv preprint arXiv:2506.07681},
  year   = {2025}
}

Comments

11 pages, 8 figures

R2 v1 2026-07-01T03:06:53.108Z