Emergence of exchange bias in van der Waals magnetic alloy CrxPt1−xTe2

Ryan Bailey-Crandell, Warren L. B. Huey, Archibald J. Williams, Wenyi Zhou, Joshua E. Goldberger, Roland K. Kawakami
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Abstract

CrxPt1−xTe2 is a recently developed van der Waals magnetic alloy noted for its stability under ambient conditions. Here, we report the emergence of an exchange bias effect in CrxPt1−xTe2, without typical exchange bias sources such as an adjacent antiferromagnetic layer. We find that the exchange bias is present for x = 0.45 and absent for x = 0.35, which is correlated to the presence of a Cr modulation where the Cr concentration alternates each vdW layer (modulation period of 2 layers) for x ≥ 0.4. We perform Monte Carlo simulations utilizing exchange parameters from first-principles calculations, which recreate the exchange bias in hysteresis loops of Cr0.45Pt0.55Te2. From our simulations, we infer the source of exchange bias to be magnetic moments locked into free energy minima that resist magnetization reversal. This work presents a way to introduce desirable magnetic properties to van der Waals magnets.

Abstract Image

范德华磁性合金 CrxPt1-xTe2 中交换偏压的出现
CrxPt1-xTe2 是最近开发的范德华磁性合金,因其在环境条件下的稳定性而备受关注。在这里,我们报告了在 CrxPt1-xTe2 中出现的交换偏压效应,而没有典型的交换偏压源,如相邻的反铁磁层。我们发现在 x = 0.45 时存在交换偏压,而在 x = 0.35 时则不存在交换偏压,这与存在铬调制有关,在 x ≥ 0.4 时,铬浓度会交替出现在每个 vdW 层(调制周期为 2 层)。我们利用第一原理计算得出的交换参数进行蒙特卡罗模拟,再现了 Cr0.45Pt0.55Te2 磁滞环中的交换偏置。根据模拟结果,我们推断交换偏压的来源是被锁定在自由能最小值的磁矩,这些磁矩会抵制磁化反转。这项研究提出了一种为范德华磁体引入理想磁性的方法。
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