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Quantum Materials and Devices

Submission Deadline: November 1, 2020View Collection

Material advancement and understanding is foundational to the understanding and advancement of technologies, including quantum technology. While current quantum technology is based on well-developed materials such as “conventional” superconductors, the past several decades have witnessed the emergence of many new classes of “quantum materials” featuring more exotic quantum properties. They bring intriguing promises for better performing quantum technological applications. This Special Topic, organized by Yong Chen and Philippe Bouyer, will review theoretical and experimental progresses made to study quantum materials such as topological quantum materials, 2D systems, correlated materials, and more. It will address questions such as how to utilize and harness their properties, how to better understand and characterize them or how they combine with “conventional” materials for new quantum technology concepts.

Topics covered include, but are not limited to:

  • 2D materials
  • Low dimensional materials
  • Hybrid quantum materials
  • Quantum sensors and qubits
  • Quantum transport and devices
  • Topological quantum materials and phases
  • Quantum phase transitions
  • Correlated quantum materials

Guest Editors

Prof. Yong Chen, Purdue University, USA

Prof. Philippe Bouyer, University of Bordeaux, France

Submission Deadline: November 1, 2020View Collection
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