论文标题

Ca $ _3 $ ru $ _2 $ o $ _7 $的磁性结构和场依赖性介导的旋转重新定向转变

The magnetic structure and field dependence of the cycloid phase mediating the spin reorientation transition in Ca$_3$Ru$_2$O$_7$

论文作者

Faure, Q., Dashwood, C. D., Colin, C. V., Johnson, R. D., Ressouche, E., Stenning, G. B. G., Spratt, J., McMorrow, D. F., Perry, R. S.

论文摘要

我们报告了对CA $ _3 $ ru $ _2 $ o $ $ _7 $的环形相磁结构的全面实验研究,该研究介导了自旋重新定向过渡,并确定了其磁相图。 In zero applied field, single-crystal neutron diffraction data confirms the scenario deduced from an earlier resonant x-ray scattering study: between $46.7$~K $< T < 49.0$~K the magnetic moments form a cycloid in the $a-b$ plane with a propagation wavevector of $(δ,0,1)$ with $δ\simeq 0.025$ and an ordered moment of about 1 $μ_ {\ rm {b}} $,随着温度的偏心率。在与$ b $轴平行应用的应用磁场中,$(δ,0,1)$卫星峰的强度连续降低至约$μ__0h \ simeq 5 $ t,在该场中,系统在该场中占地。环形的偏心率和波形随场的增加,后者表明,通过磁结构效应,抗$ - $对称的dzyaloshinskii $ -Moriya相互作用增强了。使用磁力测定法和电阻率仔细绘制了各种低温磁相之间的过渡。所得的相图表明,在温度随着场地的增加而迅速扩展的温度窗口中存在,然后在5 t处过渡到两极分化的顺磁性。高场磁磁性测量表明,低于$ t \ simeq 70 $ k的电阻率在较低的温度下持续下降,表明较低的温度较低,我们在较低的温度下,我们在较低的温度下,我们在较低的温度下,我们的温度较高。单晶。我们讨论了我们的结果,参考了先前关于CA $ _3 $ ru $ _2 $ o $ $ _7 $的磁相图的报告,该样品使用了更金属和/或多域的样品。

We report a comprehensive experimental investigation of the magnetic structure of the cycloidal phase in Ca$_3$Ru$_2$O$_7$, which mediates the spin reorientation transition, and establishes its magnetic phase diagram. In zero applied field, single-crystal neutron diffraction data confirms the scenario deduced from an earlier resonant x-ray scattering study: between $46.7$~K $< T < 49.0$~K the magnetic moments form a cycloid in the $a-b$ plane with a propagation wavevector of $(δ,0,1)$ with $δ\simeq 0.025$ and an ordered moment of about 1 $μ_{\rm{B}}$, with the eccentricity of the cycloid evolving with temperature. In an applied magnetic field applied parallel to the $b$-axis, the intensity of the $(δ,0,1)$ satellite peaks decreases continuously up to about $μ_0 H \simeq 5$ T, above which field the system becomes field polarised. Both the eccentricity of the cycloid and the wavevector increase with field, the latter suggesting an enhancement of the anti$-$symmetric Dzyaloshinskii$-$Moriya interaction via magnetostriction effects. Transitions between the various low-temperature magnetic phases have been carefully mapped out using magnetometry and resistivity. The resulting phase diagram reveals that the cycloid phase exists in a temperature window that expands rapidly with increasing field, before transitioning to a polarised paramagnetic state at 5 T. High-field magnetoresistance measurements show that below $T\simeq 70$ K the resistivity increases continuously with decreasing temperature, indicating the inherent insulating nature at low temperatures of our high-quality, untwinned, single-crystals. We discuss our results with reference to previous reports of the magnetic phase diagram of Ca$_3$Ru$_2$O$_7$ that utilised samples which were more metallic and/or poly-domain.

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