论文标题

铜 - 氧化物连接中的射击噪声揭示的假态中的电子配对

Electron pairing in the pseudogap state revealed by shot noise in copper-oxide junctions

论文作者

Zhou, Panpan, Chen, Liyang, Liu, Yue, Sochnikov, Ilya, Bollinger, Anthony T., Han, Myung-Geun, Zhu, Yimei, He, Xi, Bozovic, Ivan, Natelson, Douglas

论文摘要

为了了解铜氧化物中的高温超导性,一场激烈的辩论集中在伪造上 - 一种部分间隙,在大容量临界温度上方的“正常”状态下,偏向于费米表面的部分差距($ t_ {c} $)。伪群已归因于前体超导性,归因于预先形成的对或竞争订单,例如电荷密度波。直接确定载体作为温度和偏差的函数可以帮助解决这些替代方案。在这里,我们报告了高质量LA $ _ {2-x} $ sr $ _ {X} $ CUO $ _ {4} $/la $ _ {2} $ _ {2} $ cuo $ $ $ _ {4} $ _ {4} $ _ {2-x $ _ {2-2-x $ _sr $ _ $ _} $ _ {4 (LSCO/LCO/LSCO)使用原子层逐层分子束外延制造的异质结构,以几种掺杂水平。数据描述了偏置电压 - 温度($ v-t $)空间中的三个不同区域。在超导间隙区域之外,射击噪声与电荷-E载体的独立隧道数量相吻合。在差距深处,射击噪声大大增强,让人联想到多个安德烈反射。从$ t_ {c} $上方开始,并扩展到比间隙大得多的偏差,在一个广泛的区域中,噪声大大超过了单付隧道的期望,表明载体的配对。对在温度和偏置的伪gap区域深处可检测到。

In the quest to understand high-temperature superconductivity in copper oxides, a vigorous debate has been focused on the pseudogap - a partial gap that opens over portions of the Fermi surface in the 'normal' state above the bulk critical temperature ($T_{c}$). The pseudogap has been attributed to precursor superconductivity, to the existence of preformed pairs, or to competing orders such as charge-density waves. A direct determination of the charge of carriers as a function of temperature and bias could help resolve among these alternatives. Here, we report measurements of the shot noise of tunneling current in high-quality La$_{2-x}$Sr$_{x}$CuO$_{4}$/La$_{2}$CuO$_{4}$/La$_{2-x}$Sr$_{x}$CuO$_{4}$ (LSCO/LCO/LSCO) heterostructures fabricated using atomic-layer-by-layer molecular beam epitaxy, for several doping levels. The data delineate three distinct regions in the bias voltage-temperature ($V-T$) space. Well outside the superconducting gap region, the shot noise agrees quantitatively with independent tunneling of charge-e carriers. Deep within the gap, shot noise is greatly enhanced, reminiscent of multiple Andreev reflections. Starting above $T_{c}$ and extending to biases much larger than the gap, there is a broad region in which the noise substantially exceeds the expectations of single-charge tunneling, indicating pairing of carriers. Pairs are detectable deep into the pseudogap region of temperature and bias.

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