论文标题

van der waals pi josephson连接

Van der Waals pi Josephson junctions

论文作者

Kang, Kaifei, Berger, Helmuth, Watanabe, Kenji, Taniguchi, Takashi, Forro, Laszlo, Shan, Jie, Mak, Kin Fai

论文摘要

在铁磁铁中,接近性诱导的超导性可以诱导具有有限的质量动量的库珀对。所得的空间调制超导顺序参数能够稳定Josephson连接(JJS),并在超导体 - ferromagnet异质结构中具有PI相差,并实现“安静”相位颤动。二维(2D)分层超导和磁性材料的出现有望通过van der waals堆叠实现具有原子尖锐界面的PI JJ的新平台。在这里,我们证明了由NBSE2(Ising超导体)制成的厚度驱动的0-PI跃迁,其cr2Ge2Te6(铁磁半导体)弱环节。通过系统地改变CR2GE2TE6的厚度,我们观察到在8 nm左右的临界厚度下消失的超电流,然后在厚度进一步增加时重新输入超电流。在临界厚度附近,我们进一步观察到了异常的超潮流干扰模式,而临界电流消失在零面积内磁场左右。它们表示CR2GE2TE6中纳米级磁域可能引起的0-PI JJS(具有0和PI区域)的形成。我们的工作突出了范德华(Van der Waals)超导力 - 铁磁性异质结构的潜力,以探索非常规超导性和超导电子学的探索。

Proximity-induced superconductivity in a ferromagnet can induce Cooper pairs with a finite center-of-mass momentum. The resultant spatially modulated superconducting order parameter is able to stabilize Josephson junctions (JJs) with pi phase difference in superconductor-ferromagnet heterostructures and realize 'quiet' phase qubits. The emergence of two-dimensional (2D) layered superconducting and magnetic materials promises a new platform for realizing pi JJs with atomically sharp interfaces by van der Waals stacking. Here we demonstrate a thickness-driven 0-pi transition in JJs made of NbSe2 (an Ising superconductor) with a Cr2Ge2Te6 (a ferromagnetic semiconductor) weak link. By systematically varying the Cr2Ge2Te6 thickness, we observe a vanishing supercurrent at a critical thickness around 8 nm, followed by a re-entrant supercurrent upon further increase in thickness. Near the critical thickness, we further observe unusual supercurrent interference patterns with vanishing critical current around zero in-plane magnetic field. They signify the formation of 0-pi JJs (with both 0 and pi regions) likely induced by the nanoscale magnetic domains in Cr2Ge2Te6. Our work highlights the potential of van der Waals superconductor-ferromagnet heterostructures for the explorations of unconventional superconductivity and superconducting electronics.

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