论文标题

在超低温度下,核秩序引起的量子批判性和重铁的超导性在ybrh $ _2 $ _2 $ _2 $

Nuclear-order-induced quantum criticality and heavy-fermion superconductivity at ultra-low temperatures in YbRh$_2$Si$_2$

论文作者

Schuberth, Erwin, Wirth, S., Steglich, F.

论文摘要

四方重力金属ybrh $ _2 $ si $ _2 $在$ t _ {{\ rm n} = 70 $ mk上以$ t _ { ($ a,b $)飞机。在非常低场处的超低温度磁化和热容量测量表明,4 $ f $ - 电子抗铁磁(AF)订单通过核主导的杂种(a-phase')在$ t _ {\ rm a} $ 2.3 $ 2.3 $ mk,例如$ 2.3 $ mk,例如$ 2.3 $ mk,例如等,Science \ textbf {351},485(2016))。这使重屈光度超导率($ t _ {\ rm c} = 2 $ mk)的发作似乎在高温下被主要的自动锻炼订单所抑制。 Meissner效应的测量结果显示了批量超导性,$ t _ {\ rm c} $减少在$ t _ {\ rm c} <1 $ mk下,$ b> 20 $ mt。在温度高达10 MK处的弱但独特的超导屏蔽信号的观察表明,形成具有紧急A相阶和超导性的绝缘随机岛。冷却后,屏蔽信号在温度下几乎线性增加,表明这些岛屿的生长最终在​​$ t \ 6.5 $ mk处渗透。 Nguyen等人最近的电抗性结果。 (nat。commun。\ textbf {12},4341(2021))确认在超低温度下ybrh $ _2 $ _2 $ _2 $ _2 $中的超导性存在。 Schuberth等人的结果组合。和Nguyen等。在低于$ b _ {\ rm n} $的超低温度下,以及先前在顺磁状态下温度较高的那些温度下,提供了令人信服的证据,表明近差损坏量子的量子稳健地促进了非常常规的超导性。

The tetragonal heavy-fermion metal YbRh$_2$Si$_2$ orders antiferromagnetically at $T_{\rm N} = 70$ mK and exhibits an unconventional quantum critical point (QCP) of Kondo-destroying type at $B_{\rm N} = 60$ mT, for the magnetic field applied within the basal ($a,b$) plane. Ultra-low-temperature magnetization and heat-capacity measurements at very low fields indicate that the 4$f$-electronic antiferromagnetic (AF) order is strongly suppressed by a nuclear-dominated hybrid order (`A-phase') at $T_{\rm A} \le 2.3$ mK, such that quantum critical fluctuations develop at $B \approx 0$ (Schuberth et al., Science \textbf{351}, 485 (2016)). This enables the onset of heavy-fermion superconductivity ($T_{\rm c} = 2$ mK) which appears to be suppressed by the primary AF order at elevated temperatures. Measurements of the Meissner effect reveal bulk superconductivity, with $T_{\rm c}$ decreasing under applied field to $T_{\rm c} < 1$ mK at $B > 20$ mT. The observation of a weak but distinct superconducting shielding signal at a temperature as high as 10 mK suggests the formation of insulated random islands with emergent A-phase order and superconductivity. Upon cooling, the shielding signal increases almost linearly in temperature, indicating a growth of the islands which eventually percolate at $T \approx 6.5$ mK. Recent electrical-resistivity results by Nguyen et al. (Nat. Commun. \textbf{12}, 4341 (2021)) confirm the existence of superconductivity in YbRh$_2$Si$_2$ at ultra-low temperatures. The combination of the results of Schuberth et al. and Nguyen et al. at ultra-low temperatures below $B_{\rm N}$, along with those previously established at higher temperatures in the paramagnetic state, provide compelling evidence that the Kondo-destruction quantum criticality robustly drives unconventional superconductivity.

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