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Welcome to Quantum and Topology Epitaxy lab!!  
Welcome to Quantum and Topology Epitaxy lab!!  


We are scientific explorers looking to discover previously-unknown territories in the quantum and topological phase spaces. Our flagship is a unique hybrid molecular beam epitaxy technique capable of manipulating and building artificial materials with atomic scale controllability, supported by various other advanced tools. With these unique capabilities, we investigate various thin film quantum materials including topological insulators, topological superconductors, topologial quantum computers, Weyl/Dirac semimetals, materials for quantum computation, 2D materials, complex oxides and their hybrid structures, searching for new physics and applications in the quantum and topological arena.  
We are scientific explorers looking for previously-unknown territories in the world of quantum and topology. Our flagship is a unique hybrid molecular beam epitaxy technique capable of manipulating and building artificial materials with atomic precision, supported by various other advanced tools and collaboration teams. With these unique capabilities, we explore various hybrid thin film quantum materials including topological insulators, topological superconductors, Weyl/Dirac semimetals, materials for quantum computation, 2D materials, and correlated oxides and search for new physics and applications in the quantum and topological arena.  


If you want to share the joy of discoveries in the world of quantum and topology, please join the Quantum and Topology Epitaxy lab!!
If you want to share the joy of discoveries in the world of quantum and topological materials, please join the Quantum and Topology Epitaxy lab!!

Revision as of 11:31, 20 May 2022

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Welcome to Quantum and Topology Epitaxy lab!!

We are scientific explorers looking for previously-unknown territories in the world of quantum and topology. Our flagship is a unique hybrid molecular beam epitaxy technique capable of manipulating and building artificial materials with atomic precision, supported by various other advanced tools and collaboration teams. With these unique capabilities, we explore various hybrid thin film quantum materials including topological insulators, topological superconductors, Weyl/Dirac semimetals, materials for quantum computation, 2D materials, and correlated oxides and search for new physics and applications in the quantum and topological arena.

If you want to share the joy of discoveries in the world of quantum and topological materials, please join the Quantum and Topology Epitaxy lab!!