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通过量子化电导涨落探测少层NbSe₂中的量子相变。

Quantum Phase Transition in Few-Layer NbSe_{2} Probed through Quantized Conductance Fluctuations.

作者信息

Kundu Hemanta Kumar, Ray Sujay, Dolui Kapildeb, Bagwe Vivas, Choudhury Palash Roy, Krupanidhi S B, Das Tanmoy, Raychaudhuri Pratap, Bid Aveek

机构信息

Department of Physics, Indian Institute of Science, Bangalore 560012, India.

Tata Institute of Fundamental Research, Mumbai 400005, India.

出版信息

Phys Rev Lett. 2017 Dec 1;119(22):226802. doi: 10.1103/PhysRevLett.119.226802. Epub 2017 Nov 29.

Abstract

We present the first observation of dynamically modulated quantum phase transition between two distinct charge density wave (CDW) phases in two-dimensional 2H-NbSe_{2}. There is recent spectroscopic evidence for the presence of these two quantum phases, but its evidence in bulk measurements remained elusive. We studied suspended, ultrathin 2H-NbSe_{2} devices fabricated on piezoelectric substrates-with tunable flakes thickness, disorder level, and strain. We find a surprising evolution of the conductance fluctuation spectra across the CDW temperature: the conductance fluctuates between two precise values, separated by a quantum of conductance. These quantized fluctuations disappear for disordered and on-substrate devices. With the help of mean-field calculations, these observations can be explained as to arise from dynamical phase transition between the two CDW states. To affirm this idea, we vary the lateral strain across the device via piezoelectric medium and map out the phase diagram near the quantum critical point. The results resolve a long-standing mystery of the anomalously large spectroscopic gap in NbSe_{2}.

摘要

我们展示了在二维2H-NbSe₂中两个不同电荷密度波(CDW)相之间动态调制量子相变的首次观测结果。最近有光谱学证据表明存在这两个量子相,但在体测量中的证据仍然难以捉摸。我们研究了在压电衬底上制备的悬浮超薄2H-NbSe₂器件,其具有可调的薄片厚度、无序程度和应变。我们发现,在CDW温度范围内,电导涨落谱出现了惊人的演变:电导在两个精确值之间波动,这两个值之间相差一个电导量子。对于无序的和在衬底上的器件,这些量子化涨落消失了。借助平均场计算,这些观测结果可以解释为源于两个CDW态之间的动态相变。为了证实这一观点,我们通过压电介质改变器件上的横向应变,并绘制出量子临界点附近的相图。这些结果解开了NbSe₂中异常大的光谱能隙这一长期存在的谜团。

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