论文标题

富含氢的高温超导体中的磁通量

Trapped magnetic flux in hydrogen-rich high-temperature superconductors

论文作者

Minkov, V. S., Ksenofontov, V., Budko, S. L., Talantsev, E. F., Eremets, M. I.

论文摘要

高压稳定的富氢化合物中超导性的最新发现表明,超导性TC的临界温度可以接近室温。当前的研究集中于寻找具有较高TC的新超导体,以了解传统超导率的最终极限,而在较低压力下的高-TC超导体。但是,高压条件对实验研究造成了严重限制。长期以来,电气传输测量一直是在高压下可靠检测超导性的主要实验技术,而磁敏感性测量仍然是一个挑战。在这里,我们大大更改了磁性测量方案以探测被困的磁通量。我们对H3S和LAH10的样品进行了测试,并提出了对高压超导性的常规检查。使用捕获通量的温度和磁场依赖性,我们估计TC〜195 K,较低的临界场〜0.36 t,不可逆性场〜1.7 T,完整的穿透场〜8.8 T,伦敦穿透性深度〜37 nm,临界电流密度JC(T)在〜155 GPA的H3S中,在〜155 GPA中。在超导相的混合物中发现,捕获的通量方法对特定相位:硫和氢化的lahx的伴随相。与在低外部磁场处发生的Meissner状态相反,在零施加的磁场处捕获的通量产生的磁反应在数十倍的强度更强,并且不会受到笨重的钻石砧室的磁背景的污染。该技术可能是筛选新超导材料,多相,受污染的样品或在环境压力下具有低超导级分的样品的强大工具。

Recent discoveries of superconductivity in hydrogen-rich compounds stabilized by high pressures have shown that a critical temperature of superconductivity Tc can reach near room temperature values. The current studies focus on the search for new superconductors with higher Tcs to understand the ultimate limit of conventional superconductivity, and high-Tc superconductors at lower pressures. However, high pressure conditions put serious limitations on experimental studies. Electrical transport measurements have long been the primary experimental technique for reliable detection of superconductivity at high pressures, whereas magnetic susceptibility measurements continue to be a challenge. Here, we dramatically changed the protocol of magnetic measurements to probe the trapped magnetic flux. We tested this technique on samples of H3S and LaH10 and propose it for a routine examination of superconductivity at high pressures. Using the temperature- and magnetic field dependences of the trapped flux we estimated Tc ~195 K, a lower critical field ~0.36 T, an irreversibility field ~1.7 T, a full penetration field ~8.8 T, the London penetration depth ~37 nm, and critical current densities jc(T) in H3S at ~155 GPa in a wide temperature range. The trapped flux method is found to be sensitive to a particular phase in a mixture of superconducting phases: concomitant phases of sulfur and hydrogen-depleted LaHx were detected. In contrast to the Meissner state occurring at low external magnetic fields, a magnetic response from the trapped flux at zero applied magnetic field is in tens times stronger and is not contaminated by the magnetic background of a bulky diamond anvil cell. This technique can be a powerful tool for the screening of new superconducting materials, the study of multiphase, contaminated samples, or samples with a low superconducting fraction at ambient pressure too.

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