论文标题

在压力下,抗铁磁极性金属PB2COOSO6中的磁和结构相变

Coupled magnetic and structural phase transitions in the antiferromagnetic polar metal Pb2CoOsO6 under pressure

论文作者

Jiao, Yuanyuan, Fang, Yue-Wen, Sun, Jianping, Shan, Pengfei, Yu, Zhenhai, Feng, Hai L., Wang, Bosen, Ma, Hanming, Uwatoko, Yoshiya, Yamaura, Kazunari, Guo, Yanfeng, Chen, Hanghui, Cheng, Jinguang

论文摘要

PB $ _2 $ COOSO $ _6 $是一种新合成的极性金属,在CO和OS Sublattices的抗磁磁序中,磁性挫败感打破了反转对称性。耦合的磁和结构过渡在环境压力下发生在45 K处。在这里,我们执行运输测量和第一原理计算,以研究PB $ _2 $ COOSO $ _6 $的磁/结构耦合过渡的压力影响。在实验上,我们在$ t_n $下的电阻率异常在各种压力下在三次Cubic Anvil细胞设备中的各种压力下。我们发现,从电阻率异常确定的$ t_n $首先会随着压力而迅速增加,$ dt_n/dp $ = +6.8(8)k/gpa,$ p <4 $ gpa,然后随着1.8(4)k/gpa高于4 gpa的坡度而增加。我们的第一原理计算表明,在压力下,观察到的$ dt_n/dp $的不连续性可能归因于OS磁矩消失。压力大大降低了操作系统,并完全抑制了它的临界值,从而缓解了PB $ _2 $ cooso $ _6 $的防铁磁订单中的磁性挫败感。 CO和OS极性扭曲随着压力的增加而减小,并在临界压力下同时消失。因此,高于临界压力,新的中心对称性抗铁磁状态出现在pb $ _2 $ cooso $ _6 $中,与环境压力下的一个不同,因此显示出$ dt_n/dp $的不连续性。

Pb$_2$CoOsO$_6$ is a newly synthesized polar metal in which inversion symmetry is broken by the magnetic frustration in an antiferromagnetic ordering of Co and Os sublattices. The coupled magnetic and structural transition occurs at 45 K at ambient pressure. Here we perform transport measurements and first-principles calculations to study the pressure effects on the magnetic/structural coupled transition of Pb$_2$CoOsO$_6$. Experimentally we monitor the resistivity anomaly at $T_N$ under various pressures up to 11 GPa in a cubic anvil cell apparatus. We find that $T_N$ determined from the resistivity anomaly first increases quickly with pressure in a large slope of $dT_N/dP$ = +6.8(8) K/GPa for $P < 4$ GPa, and then increases with a much reduced slope of 1.8(4) K/GPa above 4 GPa. Our first-principles calculations suggest that the observed discontinuity of $dT_N/dP$ around 4 GPa may be attributed to the vanishing of Os magnetic moment under pressure. Pressure substantially reduces the Os moment and completely suppresses it above a critical value, which relieves the magnetic frustration in the antiferromagnetic ordering of Pb$_2$CoOsO$_6$. The Co and Os polar distortions decrease with the increasing pressure and simultaneously vanish at the critical pressure. Therefore above the critical pressure a new centrosymmetric antiferromagnetic state emerges in Pb$_2$CoOsO$_6$, distinct from the one under ambient pressure, thus showing a discontinuity in $dT_N/dP$.

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