论文标题
杂种超导纳米线中的单线和三胞胎库珀对分裂
Singlet and triplet Cooper pair splitting in hybrid superconducting nanowires
论文作者
论文摘要
在大多数天然发生的超导体中,带有相反旋转的电子成对形成库珀对。这包括常规$ S $ - 波超导体,例如铝,以及高$ t_ \ text {c} $,$ d $ - 波超导体。尽管有希望的进展,但尚未最终识别,合成的,尚未确定,合成的,尚未确定和合成,具有固有$ p $ p $ p $波的超导性,托管库珀对。取而代之的是,使$ S $波超导体与磁性材料接触的工程平台显示出令人信服的相等旋转配对的签名。在这里,我们直接测量自旋量化量子点之间的相等自旋配对。该配对是从$ S $ - 波超导体到具有强旋转轨道相互作用的半导体纳米线引起的。我们通过证明打破库珀对可以导致两个具有相等自旋极化的电子来证明这种配对。我们的结果表明,量子点之间对单线和三重态配对的可控检测。实现人工基塔夫链将需要以一系列量子点的序列实现此类三胞胎配对。
In most naturally occurring superconductors, electrons with opposite spins are paired up to form Cooper pairs. This includes both conventional $s$-wave superconductors such as aluminum as well as high-$T_\text{c}$, $d$-wave superconductors. Materials with intrinsic $p$-wave superconductivity, hosting Cooper pairs made of equal-spin electrons, have not been conclusively identified, nor synthesized, despite promising progress. Instead, engineered platforms where $s$-wave superconductors are brought into contact with magnetic materials have shown convincing signatures of equal-spin pairing. Here, we directly measure equal-spin pairing between spin-polarized quantum dots. This pairing is proximity-induced from an $s$-wave superconductor into a semiconducting nanowire with strong spin-orbit interaction. We demonstrate such pairing by showing that breaking a Cooper pair can result in two electrons with equal spin polarization. Our results demonstrate controllable detection of singlet and triplet pairing between the quantum dots. Achieving such triplet pairing in a sequence of quantum dots will be required for realizing an artificial Kitaev chain.