Co₃Sn₂S₂ Crystals
Co₃Sn₂S₂ is a kagome lattice material classified as a topological Weyl semimetal. It demonstrates quantum transport properties, including the intrinsic anomalous Hall effect, carrier mobility, and spin-orbit coupling. These attributes support applications in spintronics, quantum computing, and topological physics research. The Co₃Sn₂S₂ crystals are synthesized using a high-temperature flux growth method for material research.
Sample Size:
Crystals larger than 25 mm²
Material Properties:
Topological Weyl semimetal
Carrier mobility
spin-orbit coupling
Crystal Structure:
Layered kagome lattice
Degree of Exfoliation: Can be exfoliated for 2D studies and thin-film applications
Other Characteristics:
Confirmed intrinsic anomalous Hall effect
topological and electronic responses
Environmental and thermal stability
Applications:
Spintronics: For spin transport devices and exploring spin-related quantum phenomena.
Quantum Computing: For studying Weyl fermions and topological quantum states.
Topological Physics Research: Supports investigations into quantum magnetotransport and other stated properties. Magneto-optical Devices: For optoelectronic and magneto-optical technologies.
| Option 1 | > 25 mm² |
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