论文标题

材料制备,单晶生长和Cuprate高温超导体LA1.6-XND0.4SRXCUO4的相图

Materials preparation, single crystal growth, and the phase diagram of the cuprate high temperature superconductor La1.6-xNd0.4SrxCuO4

论文作者

Dragomir, Mirela, Ma, Qianli, Clancy, J. Patrick, Ataei, Amirreza, Dube, Paul A., Sharma, Sudarshan, Huq, Ashfia, Dabkowska, Hanna A., Taillefer, Louis, Gaulin, Bruce D.

论文摘要

LA-214 Cuprate超导剂家族LA1.6-XND0.4SRXCUO4(ND-LSCO)的一个分支具有重大且持续的兴趣,在很大程度上是因为它显示出规范孔供您使用的相位图的完全复杂性,同时具有高的TC超级传导性,同时表现出高度低调的高度可观的高度可靠。低超导TC的低导体暗示实验可访问的磁场可以抑制零温度的超导性。特别是,这已经使ND-LSCO中T = 0基态的各种运输和热力学研究,没有超导性,横跨临界掺杂p* = 0.23,其中伪随相结束。其超导特性对晶体对称性的强烈依赖性促使对ND-LSCO结构相图的仔细研究。本文提供了一项系统的研究,并摘要ND-LSCO的单晶和多晶样品的材料制备和表征。已合成了X范围为0.01至0.40的单相多晶样品,并且在整个区域中选择X的ND-LSCO的大单晶(0.07、0.12、0.12、0.17、0.19、0.19、0.225、0.24和0.26)由光学浮动区域种植。对这些样品的系统性中子和X射线衍射研究分别在低和室温下,分别为10 K和300 K。这些研究使我们能够遵循各种结构相变,并为ND-LSCO提出了更新的结构相图。特别是,我们发现低温四方(LTT)相在临界掺杂pltt = 0.255(5)处结束,与p*明显分开。

One branch of the La-214 family of cuprate superconductors, La1.6-xNd0.4SrxCuO4 (Nd-LSCO), has been of significant and sustained interest, in large part because it displays the full complexity of the phase diagram for canonical hole-doped, high Tc superconductivity, while also displaying relatively low superconducting critical temperatures. The low superconducting Tc's imply that experimentally accessible magnetic fields can suppress the superconductivity to zero temperature. In particular, this has enabled various transport and thermodynamic studies of the T = 0 ground state in Nd-LSCO, free of superconductivity, across the critical doping p* = 0.23 where the pseudogap phase ends. The strong dependence of its superconducting properties on its crystal symmetry has itself motivated careful studies of the Nd-LSCO structural phase diagram. This paper provides a systematic study and summary of the materials preparation and characterization of both single crystal and polycrystalline samples of Nd-LSCO. Single-phase polycrystalline samples with x spanning the range from 0.01 to 0.40 have been synthesized, and large single crystals of Nd-LSCO for select x across the region (0.07, 0.12, 0.17, 0.19, 0.225, 0.24, and 0.26) were grown by the optical floating zone method. Systematic neutron and X-ray diffraction studies on these samples were performed at both low and room temperatures, 10 K and 300 K, respectively. These studies allowed us to follow the various structural phase transitions and propose an updated structural phase diagram for Nd-LSCO. In particular, we found that the low-temperature tetragonal (LTT) phase ends at a critical doping pLTT = 0.255(5), clearly separated from p*.

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