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Two-dimensional incommensurate and three-dimensional commensurate magnetic order and fluctuations in La_(2-x)Ba_xCuO_4

机译:La_(2-x)Ba_xCuO_4的二维不相称和三维相称磁阶和涨落

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摘要

We present neutron-scattering measurements on single crystals of lightly doped La_(2-x)Ba_xCuO_4, with 0 ≤ x ≤ 0.035. These reveal the evolution of the magnetism in this prototypical doped Mott insulator from a three-dimensional (3D) commensurate (C) antiferromagnetic ground state, which orders at a relatively high T_N, to a two-dimensional (2D) incommensurate (IC) ground state with finite-ranged static correlations, which appear below a relatively low effective T_N. At low temperatures, the 2D IC magnetism coexists with the 3D C magnetism for doping concentrations as low as ~0.0125. We find no signal of a 3D C magnetic ground state by x ~ 0.025, consistent with the upper limit of x ~ 0.02 observed in the sister family of doped Mott insulators, La_(2-x)Ba_xCuO_4. The 2D IC ground states observed for 0.0125 ≤ x ≤ 0.035 are diagonal, and are rotated by 45 degrees within the orthorhombic basal plane compared with those previously reported for samples with superconducting ground states: La_(2-x)Ba_xCuO_4, with 0.05 ≤ x ≤ 0.095. We construct a phase diagram based solely on magnetic order-parameter measurements, which displays much of the complexity of standard high-temperature superconductivity phase diagrams discussed in the literature. Analysis of high-energy resolution inelastic neutron scattering at moderately low temperatures shows a progressive depletion of the very low-energy dynamic magnetic susceptibility as x increases from 0.0125 to 0.035. This low-energy, dynamic susceptibility falls off with increasing temperature on a scale much higher than the effective 2D IC T_N appropriate to these materials. Appreciable dynamic 2D IC magnetic fluctuations inhabit much of the "pseudogap" regime of the phase diagram.
机译:我们介绍了轻掺杂La_(2-x)Ba_xCuO_4的单晶的中子散射测量结果,0≤x≤0.035。这些揭示了这种典型掺杂的Mott绝缘子中的磁性从三维(3D)相称(C)反铁磁基态(其以相对较高的T_N有序)发展为二维(2D)不相称(IC)地的演变。状态具有有限范围的静态相关性,出现在相对较低的有效T_N以下。在低温下,掺杂浓度低至〜0.0125时2D IC磁性与3D C磁性共存。我们没有发现x〜0.025的3D C磁性基态信号,这与在掺杂的Mott绝缘子姐妹系列La_(2-x)Ba_xCuO_4中观察到的x〜0.02上限一致。与先前报道的超导基态样品La_(2-x)Ba_xCuO_4的0.05≤x相比,在0.0125≤x≤0.035处观察到的2D IC基态是对角线,并且在正交平面内旋转了45度。 ≤0.095。我们仅基于磁阶参数测量构建相图,该相图显示了文献中讨论的标准高温超导相图的许多复杂性。在较低温度下对高能分辨率非弹性中子散射的分析表明,随着x从0.0125增大至0.035,极低能动磁化率会逐渐消耗。这种低能量的动态磁化率随温度的升高而下降,其幅度远高于适用于这些材料的有效2D IC T_N。相图的“ pseudogap”状态大部分都存在明显的动态2D IC磁波动。

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  • 来源
    《Physical review》 |2013年第1期|014412.1-014412.10|共10页
  • 作者单位

    Department of Physics and Astronomy, McMaster University, Hamilton, Ontario, Canada L8S 4M1;

    Department of Physics and Astronomy, McMaster University, Hamilton, Ontario, Canada L8S 4M1;

    Department of Physics and Astronomy, McMaster University, Hamilton, Ontario, Canada L8S 4M1,Department of Physics and Astronomy, Johns Hopkins University, Baltimore, Maryland 21218, USA,National Institute of Standards and Technology, Gaithersburg, Maryland 20899-6102, USA;

    Canadian Neutron Beam Centre, NRC, Chalk River Laboratories, Chalk River, Ontario, Canada KOJ 1J0;

    National Institute of Standards and Technology, Gaithersburg, Maryland 20899-6102, USA,Department of Materials Sciences and Engineering, University of Maryland, College Park, Maryland 20742, USA;

    National Institute of Standards and Technology, Gaithersburg, Maryland 20899-6102, USA,Department of Materials Sciences and Engineering, University of Maryland, College Park, Maryland 20742, USA;

    National Institute of Standards and Technology, Gaithersburg, Maryland 20899-6102, USA;

    Department of Physics and Astronomy, McMaster University, Hamilton, Ontario, Canada L8S 4M1,Department of Physics and Astronomy, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1;

    Department of Physics and Astronomy, McMaster University, Hamilton, Ontario, Canada L8S 4M1;

    Department of Physics and Astronomy, McMaster University, Hamilton, Ontario, Canada L8S 4M1,Canadian Neutron Beam Centre, NRC, Chalk River Laboratories, Chalk River, Ontario, Canada KOJ 1J0;

    Brockhouse Institute for Materials Research, McMaster University, Hamilton, Ontario, Canada L8S 4M1;

    Department of Physics and Astronomy, McMaster University, Hamilton, Ontario, Canada L8S 4M1,Brockhouse Institute for Materials Research, McMaster University, Hamilton, Ontario, Canada L8S 4M1,Canadian Institute for Advanced Research, 180 Dundas Street West, Toronto, Ontario, Canada M5G 1Z8;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    magnetic phase boundaries (including magnetic transitions; metamagnetism, etc.); static properties (order parameter; static susceptibility; heat capacities, critical exponents, etc.); dynamic properties (dynamic susceptibility; spin waves; spin diffusion; dynamic scaling, etc.);

    机译:磁相边界(包括磁跃迁;超磁性等);静态特性(阶数参数;静态磁化率;热容量;临界指数等);动态特性(动态磁化率;自旋波;自旋扩散;动态缩放等);

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