The magnetic spin dynamics and optical properties of EuZn2P2 are studied. Single crystals grown by the Sn-flux method crystallize in the P3m1 (No.~164) space group and order antiferromagnetically at TN=23.5~K. 151Eu M\"ossbauer spectroscopy confirms the presence of the Eu2+ oxidation state only and the magnetic moment angle relative to the c-axis is θ=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). Positive g-shifts (Δg) for H∥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) and ΔH(ϕ), with a dominant three-dimensional component C3D, indicative of robust interlayer coupling and antiferromagnetic fluctuations. Under light illumination, a small broadening of ΔH is observed. Furthermore, a photovoltaic effect is identified in EuZn2P2, with photodetector performance metrics suggesting promising capabilities for future optoelectronic devices.
@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}
}