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Ising Superconductivity and Quantum Phase Transition in Macro-Size Monolayer NbSe2

机译:在宏观大小单层Nbse2中的超导和量子相转变

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摘要

Two-dimensional (2D) transition metal dichalco-genides (TMDs) have a range of unique physics properties and could be used in the development of electronics, photonics, spintronics, and quantum computing devices. The mechanical exfoliation technique of microsize TMD flakes has attracted particular interest due to its simplicity and cost effectiveness. However, for most applications, large-area and high-quality films are preferred. Furthermore, when the thickness of crystalline films is down to the 2D limit (monolayer), exotic properties can be expected due to the quantum confinement and symmetry breaking. In this paper, we have successfully prepared macro-size atomically flat monolayer NbSe2 films on bilayer graphene terminated surface of 6H-SiC(0001) substrates by a molecular beam epitaxy (MBE) method. The films exhibit an onset superconducting critical transition temperature (T-c(onset)) above 6 K and the zero resistance superconducting critical transition temperature (T-c(zero)) up to 2.40 K Simultaneously, the transport measurements at high magnetic fields and low temperatures reveal that the parallel characteristic field B-c//(T = 0) is above 5 times of the paramagnetic limiting field, consistent with Zeeman-protected Ising superconductivity mechanism. Besides, by ultralow temperature electrical transport measurements, the monolayer NbSe2 film shows the signature of quantum Griffiths singularity (QGS) when approaching the zero-temperature quantum critical point.
机译:二维(2D)过渡金属二氯基基 - 基因(TMDS)具有一系列独特的物理性质,可用于电子,光子,闪铜管和量子计算装置的开发。由于其简单性和成本效益,微化TMD薄片的机械剥离技术引起了特别的兴趣。但是,对于大多数应用,大面积和高质量的薄膜是优选的。此外,当结晶膜的厚度下降到2D限位(单层)时,由于量子限制和对称性,可以预期异国特性。在本文中,我们通过分子束外延(MBE)方法在双层石墨烯封端表面上成功地制备了宏观原子平单层Nbse2薄膜的6H-SiC(0001)衬底的表面。薄膜表现出高于6k的起始超导临界转变温度(Tc(开始))和零阻力超导临界转变温度(Tc(零))同时高达2.40k,在高磁场和低温下的运输测量显示并联特征字段BC //(T = 0)高于顺磁限制场的5倍,与塞曼保护的ising超导机构一致。此外,通过超级温度电气传输测量,当接近零温度量子临界点时,单层Nbse2薄膜显示量子Griffiths奇异性(QGS)的特征。

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