Kamel R, Tozri A, Dhahri E, Hlil E K
Laboratoire de Physique Appliquée, Faculté des Sciences de Sfax, Université de Sfax B. P. 1171 Sfax 3000 Tunisia
Physics Department, College of Science, Jouf University P. O. Box: 2014 Sakaka Saudi Arabia.
RSC Adv. 2019 Sep 2;9(47):27541-27548. doi: 10.1039/c9ra03303c. eCollection 2019 Aug 29.
Magnetic properties were studied just above the ferromagnetic-paramagnetic (FM-PM) phase transition of (Nd Gd )SrMnO with = 0, 0.1, 0.3 and 0.5. The low-field inverse susceptibility ( ) of NdSrMnO exhibits a Curie-Weiss-PM behavior. For ≥ 0.1, we observe a deviation in () behavior from the Curie-Weiss law. The anomalous behavior of the () was qualified as Griffiths phase (GP)-like. The study of the evolution of the GP through a susceptibility exponent, the GP temperature and the temperature range of the GP reveals that the origin of the GP is primary due to the accommodated strain. Likewise, the magnetic data reveal distinct features visible only for = 0.5 at a low magnetic field that can be qualitatively understood as the result of ferromagnetic polarons, entailed by the strong effect of chemical/structural disorder, whose concentration increases upon cooling towards the Curie temperature. We explained the magnetic properties at a high temperature for the heavily Gd-doped sample ( = 0.5) within the phase-separation scenario as an assembly of ferromagnetic nanodomains, antiferromagnetically coupled by correlated Jahn-Teller polarons.
研究了(NdGd)SrMnO在 = 0、0.1、0.3和0.5时铁磁 - 顺磁(FM - PM)相变温度以上的磁性。NdSrMnO的低场逆磁化率( )呈现居里 - 外斯 - 顺磁行为。对于 ≥ 0.1,我们观察到 ()行为偏离居里 - 外斯定律。 ()的反常行为被认定为类格里菲斯相(GP)。通过磁化率指数、GP温度和GP温度范围对GP演化的研究表明,GP的起源主要是由于所容纳的应变。同样,磁性数据揭示了仅在 = 0.5的低磁场下可见的独特特征,这可以定性地理解为化学/结构无序的强烈影响所导致的铁磁极化子的结果,其浓度在冷却至居里温度时增加。我们在相分离情景下将重掺杂Gd样品( = 0.5)在高温下的磁性解释为由相关的 Jahn - Teller极化子反铁磁耦合的铁磁纳米畴的集合。