Breakthrough in Twisted Bilayer Graphene Research: Unlocking Secrets of "Strange Metals"

Breakthrough in Twisted Bilayer Graphene Research: Unlocking Secrets of “Strange Metals”

Researchers at the Weizmann Institute of Science in Israel have made a groundbreaking discovery in twisted bilayer graphene, observing the first-ever phasons in this material. This breakthrough could have significant implications for the understanding of “strange metals,” whose electrical resistance increases at lower temperatures. The team used a quantum twisting microscope to study the electron dynamics in twisted bilayer graphene at cryogenic temperatures, revealing a strong increase in coupling as the layers approach alignment.
  • Forecast for 6 months: Expect increased investment in research on twisted bilayer graphene and its potential applications in “strange metals.” This could lead to the development of new materials and technologies with unique properties.
  • Forecast for 1 year: As researchers continue to study the properties of twisted bilayer graphene, we can expect to see the first practical applications of this material in fields such as electronics and energy storage. This could lead to breakthroughs in the development of more efficient batteries and faster electronics.
  • Forecast for 5 years: The discovery of phasons in twisted bilayer graphene could lead to a fundamental shift in our understanding of the behavior of electrons in materials. This could have far-reaching implications for the development of new technologies, including advanced electronics, energy storage systems, and even new types of superconductors.
  • Forecast for 10 years: As research on twisted bilayer graphene continues to advance, we can expect to see the development of new industries and markets based on this material. This could include the creation of new types of energy storage systems, advanced electronics, and even new forms of transportation.

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