Low-Frequency Noise in Low-Dimensional van der Waals Materials
arXiv:1908.06204
Abstract
The emergence of graphene and two-dimensional van der Walls materials renewed interest to investigation of the low-frequency noise in the low-dimensional systems. The layered van der Waals materials offers unique opportunities for studying the low-frequency noise owing to the properties controlled by the thickness of these materials, and tunable carrier concentration. In this review, we describe unusual low-frequency noise phenomena in quasi-2D and quasi-1D van der Waals materials. We also demonstrate that the low-frequency noise spectroscopy is a powerful tool for investigation of the electron transport and charge-density-wave phase transitions in this class of materials.
5 pages, 5 figures
References in corpus (6)
- Graphene Nano-Ribbon Electronics
- Strong Suppression of Electrical Noise in Bilayer Graphene Nano Devices
- Flicker Noise in Bilayer Graphene Transistors
- Low-Frequency Electronic Noise in Exfoliated Quasi-1D TaSe3 van Der Waals Nanowires
- Low Resistivity and High Breakdown Current Density of 10-nm Diameter van der Waals TaSe3 Nanowires by Chemical Vapor Deposition
- Low-Frequency Noise and Sliding of the Charge Density Waves in Two-Dimensional Materials