For quantum materials, the lattice, charge, spin, orbit, and topology order parameters are fundamentally correlated to enable the quantum materials to exhibit exotic and rich physics properties. The basic concepts for lattice, charge, spin, orbit, and topology order parameters for quantum materials are introduced. With continuous innovation in electron microscopy theories and techniques, modern advanced electron microscopy provides powerful tools for characterizing the order parameters in quantum materials and their interrelations at the atomic scale.

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Order Parameters of Quantum Materials

  • Jing Zhu,
  • Ziqiang Wang

摘要

For quantum materials, the lattice, charge, spin, orbit, and topology order parameters are fundamentally correlated to enable the quantum materials to exhibit exotic and rich physics properties. The basic concepts for lattice, charge, spin, orbit, and topology order parameters for quantum materials are introduced. With continuous innovation in electron microscopy theories and techniques, modern advanced electron microscopy provides powerful tools for characterizing the order parameters in quantum materials and their interrelations at the atomic scale.