论文标题

通过Van der waals kondo lattice feromagnet fe $ _3 $ gete $ _2 $

Spin-polarized supercurrent through the van der Waals Kondo lattice ferromagnet Fe$_3$GeTe$_2$

论文作者

Rana, Deepti, R, Aswini, G, Basavaraja, Patra, Chandan, Howlader, Sandeep, Chowdhury, Rajeswari Roy, Kabir, Mukul, Singh, Ravi P., Sheet, Goutam

论文摘要

在新的范德华(Van der Waals)中,Kondo-lattice Fe $ _3 $ gete $ _2 $,巡回的铁磁和繁重的费米尼克行为共存。这种系统的关键特性,即自旋极化的费米表面和低费米动量,预计在与超导电极接触时会显着改变Andreev的反射,并显示出非常规近端诱导的超导性。我们观察到在超导NB和Fe $ _3 $ gete $ _2 $之间的介观界面上的Andreev反射与近托共振之间的相互作用。在NB的临界温度($ T_C $)上方,记录的差分电导($ di/dv $)光谱显示出强大的零偏置异常,这是由近核共振引起的特征性fano线形状很好地描述的。在$ t_c $下方,Fano系列与Andreev反射融合了$ di/dv $,从而导致了零偏见的戏剧性,非常规抑制电导。结果,对自旋偏振模型中Andreev反射光谱的分析产生了异常大的自旋偏振化,这并不能由单独的费米表面的自旋切割带的密度来解释。结果开辟了各种量子现象之间引人入胜的相互作用的可能性,这些量子现象可能会出现在涉及携带自旋极化传导电子的近托晶格系统的介质超导界面上。

In the new van der Waals Kondo-lattice Fe$_3$GeTe$_2$, itinerant ferromagnetism and heavy fermionic behaviour coexist. Both the key properties of such a system namely a spin-polarized Fermi surface and a low Fermi momentum are expected to significantly alter Andreev reflection dominated transport at a contact with a superconducting electrode, and display unconventional proximity-induced superconductivity. We observed interplay between Andreev reflection and Kondo resonance at mesoscopic interfaces between superconducting Nb and Fe$_3$GeTe$_2$. Above the critical temperature ($T_c$) of Nb, the recorded differential conductance ($dI/dV$) spectra display a robust zero-bias anomaly which is described well by a characteristic Fano line shape arising from Kondo resonance. Below $T_c$, the Fano line mixes with Andreev reflection dominated $dI/dV$ leading to a dramatic, unconventional suppression of conductance at zero bias. As a consequence, an analysis of the Andreev reflection spectra within a spin-polarized model yields an anomalously large spin-polarization which is not explained by the density of states of the spin-split bands at the Fermi surface alone. The results open up the possibilities of fascinating interplay between various quantum phenomena that may potentially emerge at the mesoscopic superconducting interfaces involving Kondo lattice systems hosting spin-polarized conduction electrons.

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