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几何阻挫的PrIrO中不均匀的近藤晶格

Inhomogeneous Kondo-lattice in geometrically frustrated PrIrO.

作者信息

Kavai Mariam, Friedman Joel, Sherman Kyle, Gong Mingda, Giannakis Ioannis, Hajinazar Samad, Hu Haoyu, Grefe Sarah E, Leshen Justin, Yang Qiu, Nakatsuji Satoru, Kolmogorov Aleksey N, Si Qimiao, Lawler Michael, Aynajian Pegor

机构信息

Department of Physics, Applied Physics and Astronomy, Binghamton University, Binghamton, NY, USA.

Department of Physics and Astronomy, Rice Center for Quantum Materials, Rice University, Houston, TX, USA.

出版信息

Nat Commun. 2021 Mar 2;12(1):1377. doi: 10.1038/s41467-021-21698-z.

Abstract

Magnetic fluctuations induced by geometric frustration of local Ir-spins disturb the formation of long-range magnetic order in the family of pyrochlore iridates. As a consequence, PrIrO lies at a tuning-free antiferromagnetic-to-paramagnetic quantum critical point and exhibits an array of complex phenomena including the Kondo effect, biquadratic band structure, and metallic spin liquid. Using spectroscopic imaging with the scanning tunneling microscope, complemented with machine learning, density functional theory and theoretical modeling, we probe the local electronic states in PrIrO and find an electronic phase separation. Nanoscale regions with a well-defined Kondo resonance are interweaved with a non-magnetic metallic phase with Kondo-destruction. These spatial nanoscale patterns display a fractal geometry with power-law behavior extended over two decades, consistent with being in proximity to a critical point. Our discovery reveals a nanoscale tuning route, viz. using a spatial variation of the electronic potential as a means of adjusting the balance between Kondo entanglement and geometric frustration.

摘要

由局部铱自旋的几何阻挫引起的磁涨落扰乱了烧绿石铱酸盐家族中长程磁序的形成。因此,PrIrO处于一个无需调谐的反铁磁到顺磁量子临界点,并表现出一系列复杂现象,包括近藤效应、双二次能带结构和金属自旋液体。利用扫描隧道显微镜的光谱成像,并辅以机器学习、密度泛函理论和理论建模,我们探测了PrIrO中的局域电子态,发现了电子相分离。具有明确近藤共振的纳米尺度区域与近藤破坏的非磁性金属相相互交织。这些空间纳米尺度图案呈现出分形几何,具有跨越两个数量级的幂律行为,这与接近临界点一致。我们的发现揭示了一种纳米尺度调谐途径,即利用电子势的空间变化作为调节近藤纠缠和几何阻挫之间平衡的手段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42f8/7925525/bffa41f9af9c/41467_2021_21698_Fig1_HTML.jpg

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