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A New Three-Dimensional Subsulfide lr_2ln_8S with Dirac Semimetal Behavior

机译:具有狄拉克半金属行为的新型三维亚硫化物lr_2ln_8S

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摘要

Dirac and Weyl semimetals host exotic quasiparticles with unconventional transport properties, such as high magnetoresistance and carrier mobility. Recent years have witnessed a huge number of newly predicted topological semimetals from existing databases; however, experimental verification often lags behind such predictions. Common reasons are synthetic difficulties or the stability of predicted phases. Here, we report the synthesis of the type-II Dirac semimetal Ir_(2)In_(8)S, an air-stable compound with a new structure type. This material has two Dirac crossings in its electronic structure along the Γ–Z direction of the Brillouin zone. We further show that Ir_(2)In_(8)S has a high electron carrier mobility of ∼10 000 cm~(2)/(V s) at 1.8 K and a large, nonsaturating transverse magnetoresistance of ∼6000% at 3.34 K in a 14 T applied field. Shubnikov de-Haas oscillations reveal several small Fermi pockets and the possibility of a nontrivial Berry phase. With its facile crystal growth, novel structure type, and striking electronic structure, Ir_(2)In_(8)S introduces a new material system to study topological semimetals and enable advances in the field of topological materials.
机译:狄拉克(Dirac)和韦尔(Weyl)半金属具有奇异的准粒子,它们具有非常规的传输特性,例如高磁阻和载流子迁移率。近年来,从现有数据库中可以看到大量新近预测的拓扑半金属。但是,实验验证通常滞后于这种预测。常见原因是综合困难或预测阶段的稳定性。在这里,我们报告II型狄拉克半金属Ir_(2)In_(8)S的合成,这是一种具有新结构类型的空气稳定化合物。这种材料在电子结构中沿着布里渊区的Γ-Z方向有两个Dirac交叉。我们进一步表明Ir_(2)In_(8)S在1.8 K时具有〜10 carrier000 cm〜(2)/(V s)的高电子载流子迁移率,在3.34 K时具有〜6000%的大的非饱和横向磁阻在14 T应用领域Shubnikov de-Haas振荡显示出几个小的费米口袋,并可能出现不重要的贝里相。 Ir_(2)In_(8)S凭借其易于生长的晶体,新颖的结构类型和引人注目的电子结构,引入了一种新的材料系统来研究拓扑半金属,并推动了拓扑材料领域的发展。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2019年第48期|19130-19137|共8页
  • 作者单位

    Department of Chemistry Northwestern University;

    Materials Science Division Argonne National Laboratory|Department of Chemical Engineering University College London;

    Materials Science Division Argonne National Laboratory;

    Materials Science Division Argonne National Laboratory|Department of Physics and Astronomy George Mason University;

    Donostia International Physics Center Paseo Manuel de Lardizabal|Condensed Matter Physics Department University of the Basque Country UPV/EHU;

    Department of Materials Science and Engineering Northwestern University;

    Donostia International Physics Center Paseo Manuel de Lardizabal|Condensed Matter Physics Department University of the Basque Country UPV/EHU|Centro de Física de Materiales Centro Mixto CSIC-UPV/EHU;

    Department of Chemistry Princeton University;

    Donostia International Physics Center Paseo Manuel de Lardizabal|Ikerbasque Basque Foundation for Science;

    Department of Chemistry Northwestern University|Materials Science Division Argonne National Laboratory;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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