论文标题

Magnetovolume对UTE $ _2 $中一阶元磁过渡的效果

Magnetovolume Effect on the First-Order Metamagnetic Transition in UTe$_2$

论文作者

Miyake, Atsushi, Gen, Masaki, Ikeda, Akihiko, Miyake, Kazumasa, Shimizu, Yusei, Sato, Yoshiki J., Li, Dexin, Nakamura, Ai, Homma, Yoshiya, Honda, Fuminori, Flouquet, Jacques, Tokunaga, Masashi, Aoki, Dai

论文摘要

元磁过渡与UTE $ _2 $的新型自旋三个超导性超导性之间的联系通过脉冲磁场中的磁截图测量进行了热力学讨论。我们在$μ_0H_ {\ rm m} \大约35 $ 〜t上揭示了跨元磁过渡的不连续的磁磁性,用于沿晶体结构中的晶体学$ b $轴的施加磁场。 $ΔV/v \左右的磁截图大约-5.9 \ times 10^{ - 4} $通过采用Clausius-Clapeyron方程来给出$ h _ {\ rm m m} $的初始压力依赖性,这与先前的压力实验一致。此外,揭示了通过减去平均线性磁截图得出的显着各向异性磁曲片(AMS)。与沿$ a $ axis的弱场依赖性AM相反,$ b $和$ c $轴的轴轴的范围很强,其幅度相似,但符号相反,表明其晶格不稳定。与其他$ f $ - 电子系统相比,讨论了磁场和温度的特征能量尺度之间的关系。 $ h _ {\ rm m} $的ute $ _2 $中的体积收缩,与典型的重型费米昂元磁体的体积膨胀相反,它推动了与u磁性静脉内化性质相关的价不稳定性的链接。

The link between the metamagnetic transition and novel spin-triplet superconductivity of UTe$_2$ was discussed thermodynamically through magnetostriction measurements in a pulsed-magnetic field. We revealed a discontinuous magnetostriction across the metamagnetic transition at $μ_0H_{\rm m}\approx 35$~T for the applied magnetic fields along the crystallographic $b$ axis in the orthorhombic structure. The resultanting volume magnetostriction of $ΔV/V \approx-5.9\times 10^{-4}$ gives the initial pressure dependence of $H_{\rm m}$ by employing the Clausius-Clapeyron's equation, which agrees with previous pressure experiments. Further, significant anisotropic magnetostriction (AMS), derived by subtracting the averaged linear magnetostriction, was revealed. Contrary to the weakly field-dependent AMS along the $a$ axis, those along the $b$ and $c$ axes show strong field dependences with a similar magnitude but with opposite signs, indicating its lattice instability. The relationship between characteristic energy scales of magnetic fields and temperatures was discussed in terms of the Grüneisen parameters compared to the other $f$-electron systems. The volume shrinkage in UTe$_2$ at $H_{\rm m}$, contrary to the volume expansion in typical heavy fermion metamagnets, pushes to invoke the link with the valence instability related to the itinerant-localized dual nature of the U magnetism.

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