介观物理学
材料科学
电迁移
电阻率和电导率
长石
凝聚态物理
互连
纳米尺度
光电子学
热导率
磁场
纳米技术
纳米电子学
电子迁移率
相(物质)
热稳定性
金属
磁电阻
有效质量(弹簧-质量系统)
电子传输链
电子
量子
量子点
数码产品
作者
Chengyu Zhu,Pahuni Jain,Yi Zhang,Junghyun Koo,Weideng Sun,Yaotian Li,Alexander McLeod,Chris Leighton,Gang Qiu
标识
DOI:10.48550/arxiv.2606.21057
摘要
Metallic delafossite oxides have drawn attention for their ultralow resistivity and coherent electronic transport. However, mesoscopic transport studies are hindered by the limited access to high quality nanoscale devices. Here, we report single crystalline PdCoO2 nanomembranes, enabling exploration of quasi two dimensional (2D) transport. Shubnikov de Haas and Aharonov Bohm oscillations under different magnetic field orientations are observed at low temperatures, from which the electron effective mass and electron phase coherence length are extracted. Beyond quantum transport, the electrical performance of PdCoO2 toward interconnect applications is evaluated. A nearly thickness independent room temperature resistivity is observed for flakes down to 40 nm thickness. The nanomembranes exhibit a breakdown current density up to 113 MA cm-2, with excellent thermal stability and electromigration resistance. These results demonstrate that mechanically exfoliated PdCoO2 flakes preserve the high crystalline and electronic quality of bulk crystals in the quasi-2D limit, providing a useful platform for mesoscopic transport studies and interconnect applications.
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