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可调半金属中铁电极化的直接测量

Direct measurement of ferroelectric polarization in a tunable semimetal.

作者信息

de la Barrera Sergio C, Cao Qingrui, Gao Yang, Gao Yuan, Bheemarasetty Vineetha S, Yan Jiaqiang, Mandrus David G, Zhu Wenguang, Xiao Di, Hunt Benjamin M

机构信息

Department of Physics, Carnegie Mellon University, Pittsburgh, PA, USA.

International Center for Quantum Design of Functional Materials (ICQD), Hefei National Laboratory for Physical Sciences at the Microscale, University of Science and Technology of China, Hefei, Anhui, China.

出版信息

Nat Commun. 2021 Sep 6;12(1):5298. doi: 10.1038/s41467-021-25587-3.

Abstract

Ferroelectricity, the electrostatic counterpart to ferromagnetism, has long been thought to be incompatible with metallicity due to screening of electric dipoles and external electric fields by itinerant charges. Recent measurements, however, demonstrated signatures of ferroelectric switching in the electrical conductance of bilayers and trilayers of WTe, a semimetallic transition metal dichalcogenide with broken inversion symmetry. An especially promising aspect of this system is that the density of electrons and holes can be continuously tuned by an external gate voltage. This degree of freedom enables measurement of the spontaneous polarization as free carriers are added to the system. Here we employ capacitive sensing in dual-gated mesoscopic devices of bilayer WTe to directly measure the spontaneous polarization in the metallic state and quantify the effect of free carriers on the polarization in the conduction and valence bands, separately. We compare our results to a low-energy model for the electronic bands and identify the layer-polarized states that contribute to transport and polarization simultaneously. Bilayer WTe is thus shown to be a fully tunable ferroelectric metal and an ideal platform for exploring polar ordering, ferroelectric transitions, and applications in the presence of free carriers.

摘要

铁电性是铁磁性的静电对应物,长期以来人们一直认为它与金属性不相容,因为巡游电荷会屏蔽电偶极子和外部电场。然而,最近的测量表明,在具有破缺反演对称性的半金属过渡金属二硫属化物WTe₂的双层和三层结构的电导率中存在铁电开关的迹象。该体系一个特别有前景的方面是,电子和空穴的密度可以通过外部栅极电压连续调节。这种自由度使得在向系统中添加自由载流子时能够测量自发极化。在这里,我们在双层WTe₂的双栅介观器件中采用电容传感,直接测量金属态下的自发极化,并分别量化自由载流子对导带和价带中极化的影响。我们将结果与电子能带的低能模型进行比较,并确定同时对输运和极化有贡献的层极化态。因此证明双层WTe₂是一种完全可调节谐的铁电金属,也是探索存在自由载流子时的极化有序、铁电转变及应用的理想平台。

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