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Signatures of bosonic Landau levels in a finite-momentum superconductor

机译:有限势头超导体中博源地兰水平的签名

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摘要

Charged particles subjected to magnetic fields form Landau levels (LLs). Originally studied in the context of electrons in metals(1), fermionic LLs continue to attract interest as hosts of exotic electronic phenomena(2,3). Bosonic LLs are also expected to realize novel quantum phenomena(4,5), but, apart from recent advances in synthetic systems(6,7), they remain relatively unexplored. Cooper pairs in superconductors-composite bosons formed by electrons-represent a potential condensed-matter platform for bosonic LLs. Under certain conditions, an applied magnetic field is expected to stabilize an unusual superconductor with finite-momentum Cooper pairs(8,9) and exert control over bosonic LLs(10-13). Here we report thermodynamic signatures, observed by torque magnetometry, of bosonic LL transitions in the layered superconductor Ba6Nb11S28. By applying an in-plane magnetic field, we observe an abrupt, partial suppression of diamagnetism below the upper critical magnetic field, which is suggestive of an emergent phase within the superconducting state. With increasing out-of-plane magnetic field, we observe a series of sharp modulations in the upper critical magnetic field that are indicative of distinct vortex states and with a structure that agrees with predictions for Cooper pair LL transitions in a finite-momentum superconductor(10-14). By applying Onsager's quantization rule(15), we extract the momentum. Furthermore, study of the fermionic LLs shows evidence for a non-zero Berry phase. This suggests opportunities to study bosonic LLs, topological superconductivity, and their interplay via transport(16), scattering(17), scanning probe(18) and exfoliation techniques(19).Using torque magnetometry, the thermodynamic signatures of bosonic Landau level transitions are observed in a layered superconductor, owing to the formation of Cooper pairs with finite momentum.
机译:受磁场的带电粒子形成Landau水平(LLS)。最初在金属中的电子的背景下研究(1),Fermionic LLS继续吸引兴趣的异国情调电子现象(2,3)。 Bosonic LL也有望实现新的量子现象(4,5),但除了近期合成系统的进步(6,7),它们仍然相对未开发。通过电子形成的超导体 - 复合磁振荡的Cooper对 - 代表伴随络件的潜在的冷凝物平台。在某些条件下,预计施加的磁场将稳定具有有限动量库对(8,9)的不寻常的超导体(8,9)并施加对络伴极L10(10-13)的控制。在这里,我们报告了层状超导体Ba6NB11S28中的旋转L1过渡的扭矩磁度测量仪观察的热力学签名。通过施加面内磁场,我们观察到上部临界磁场下方的突然,部分抑制,这是在超导状态内提出紧急阶段的暗示。随着平面外磁场的增加,我们观察到的上临界磁场中的一系列急剧调制,其指示不同的涡流状态,并且具有与有限动量超导体中的Cooper对LL过渡的预测同意的结构( 10-14)。通过应用OnSager的量化规则(15),我们提取势头。此外,对Fermionic LL的研究显示了非零浆果阶段的证据。这提出了研究旋转LLS,拓扑超导性和通过运输(16),散射(17),扫描探针(18)和剥离技术(19)的机会。使用扭矩磁力学,鲍斯康兰普水平过渡的热力学签名是由于具有有限动量的组合物对的形成,在层状超导体中观察。

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  • 来源
    《Nature》 |2021年第7883期|51-56|共6页
  • 作者单位

    MIT Dept Phys Cambridge MA 02139 USA;

    MIT Dept Phys Cambridge MA 02139 USA|Toho Univ Dept Phys Funabashi Chiba Japan;

    Rutgers State Univ Ctr Mat Theory Dept Phys & Astron Piscataway NJ USA;

    MIT Dept Phys Cambridge MA 02139 USA;

    Natl High Magnet Field Lab Tallahassee FL USA;

    RIKEN Ctr Emergent Matter Sci CEMS Wako Saitama Japan;

    MIT Dept Phys Cambridge MA 02139 USA;

    Harvard Univ Dept Phys Cambridge MA 02138 USA|Harvard Univ John A Paulson Sch Engn & Appl Sci Cambridge MA 02138 USA;

    MIT Dept Phys Cambridge MA 02139 USA;

  • 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);
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