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About Group

About Group

The Low-Dimensional Material Team develops high-precision measurement platforms for emerging low-dimensional quantum materials that can be applied not only to current-generation semiconductors and opto-electronic device applications, but also to next-generation quantum information devices and quantum sensors. With first principles density functional theory and nanoscale device fabrication functionality, we proactively predict optimal device configurations and material compositions based on novel low-dimensional materials, and experimentally realize them as working nanoscale devices, hoping to foster the commercialization of multifunctional electronic and optical devices.

Current R&D Projects

  • 1 Prediction of composite low-dimensional material properties based on the first-principle density functional theory
  • 2 Development of multi-functional nanoscale devices using semiconductor device fabrication technology
  • 3 Development of high precision electronic and optical measurement technologies for low-dimensional materials
  • 4 Improvement of low-dimensional material and device characteristics
  • 5 Synthesis of multi-functional low-dimensional materials

Recent R&D Highlights

  • Develop theoretical approach to design novel material properties and structures based on neural-network based deep machine learning
  • Develop high-precision inelastic tunneling spectroscopy measurement based on two-dimensional planar tunnel junctions.
  • Develop experimental and theoretical platforms to explore the intrinsic electronic and optical properties of low-dimensional semiconductors

About Other Groups

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