论文标题

mn(pt $ _ {1-x} $ pd $ _ {x} $)$ _ 5 $ p:Mn Sublattice磁性订单的Isovalent Tuning

Mn(Pt$_{1-x}$Pd$_{x}$)$_5$P: Isovalent Tuning of Mn Sublattice Magnetic Order

论文作者

Slade, Tyler J., Mudiyanselage, Ranuri S. Dissanayaka, Furukawa, Nao, Smith, Tanner R., Schmidt, Juan, Wang, Lin-Lin, Kang, Chang-Jong, Wei, Kaya, Shu, Zhixue, Kong, Tai, Baumbach, Ryan, Kotliar, Gabriel, Budko, Sergey L., Xie, Weiwei, Canfield, Paul C.

论文摘要

我们报告了MNPD $ _5 $ P的增长和表征,带有T $ _C $ $ \ $ \ $ 295 K的Ferromagnet,并通过其反铁磁模拟MNPT $ _5 $ p进行了替代研究。我们种植了MNPD $ _5 $ P和MN的单晶(Pt $ _ {1-X} $ PD $ _X $)$ _ 5 $ _ 5 $ P,通过将Mn添加到(PT $ _ {1-X} $ PD $ _ {x}} $)中。家庭中的所有化合物都采用带有空间群/mmm的分层抗蛋白$ _5 $结构,EDS和XRD结果表明MNPT $ _5 $ P和MNPD $ _5 $ P构成了一个实心解决方案。基于磁化和电阻数据,我们构建了MN的T-X相图(PT $ _ {1-X} $ PD $ _X $)$ _ 5 $ P,并演示了MNPT $ _5 $ P中的抗fiferromagnetic Order,对PD替代非常敏感。 At low Pd fractions (x $<$ 0.010), the single antiferromagnetic transition in pure MnPt$_5$P splits into a higher temperature ferromagnetic transition followed on cooling by a lower temperature ferromagnetic to antiferromagnetic transition and then by a re-entrant antiferromagnetic to ferromagnetic transition at lower temperatures.抗铁磁区域构成了一个泡沫,持续到x $ \ $ \ $ \ $ 0.009 $ \ $ \ $ 150 k,所有样品x $ <$ <$ 0.009恢复了其初始的铁磁状态,并进一步冷却至碱温度。在相同的低X范围内,我们发现室温单位单元量的非单调变化,进一步表明纯MNPT $ _5 $ P接近不稳定。一旦x $> $ 0.010,MN(Pt $ _ {1-X} $ PD $ _X $)$ _ 5 $ P进行单个铁磁过渡。 curie温度随X的速度迅速升高,从t $ _c $ \ $ \ $ \ $ 197 k at x = 0.013升至最大t $ _c $ $ \ $ 312 k的x $ \ $ \ $ \ $ \ $ 0.62,然后返回到t $ _c $ $ \ $ \ $ \ $ \ $ \ $ \ $ 295 k $ 295 k纯Mnpd $ _5 $ _5 $ _5 $ _5 $ _5 $ p(x = 1)。鉴于PT和PD是等电源,这项工作提出了有关在引入PD时MNPT $ _5 $ P的极端灵敏度的起源的问题。

We report the growth and characterization of MnPd$_5$P, a ferromagnet with T$_C$ $\approx$ 295 K, and conduct a substitutional study with its antiferromagnetic analogue MnPt$_5$P. We grow single crystals of MnPd$_5$P and Mn(Pt$_{1-x}$Pd$_x$)$_5$P by adding Mn into (Pt$_{1-x}$Pd$_{x}$)-P based melts. All compounds in the family adopt the layered anti-CeCoIn$_5$ structure with space group P4/mmm, and EDS and XRD results indicate that MnPt$_5$P and MnPd$_5$P form a solid solution. Based on magnetization and resistance data, we construct a T-x phase diagram for Mn(Pt$_{1-x}$Pd$_x$)$_5$P and demonstrate the antiferromagnetic order found in MnPt$_5$P is extraordinarily sensitive to Pd substitution. At low Pd fractions (x $<$ 0.010), the single antiferromagnetic transition in pure MnPt$_5$P splits into a higher temperature ferromagnetic transition followed on cooling by a lower temperature ferromagnetic to antiferromagnetic transition and then by a re-entrant antiferromagnetic to ferromagnetic transition at lower temperatures. The antiferromagnetic region makes up a bubble that persists to x $\approx$ 0.009 for T $\approx$ 150 K, with all samples x $<$ 0.009 recovering their initial ferromagnetic state with further cooling to base temperature. Over the same low x range we find a non-monotonic change in the room temperature unit cell volume, further suggesting that pure MnPt$_5$P is close to an instability. Once x $>$ 0.010, Mn(Pt$_{1-x}$Pd$_x$)$_5$P undergoes a single ferromagnetic transition. The Curie temperature increases rapidly with x, rising from T$_C$ $\approx$ 197 K at x = 0.013 to a maximum of T$_C$ $\approx$ 312 K for x $\approx$ 0.62, and then falls back to T$_C$ $\approx$ 295 K for pure MnPd$_5$P (x = 1). Given that Pt and Pd are isoelectronic, this work raises questions as to the origin of the extreme sensitivity of the magnetic ground state in MnPt$_5$P upon introducing Pd.

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