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Catalog of magnetic topological semimetals

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Magnetic topological semimetals offer higher mobility due to massless fermion, promising applications in spintronics, anomalous Hall effect at significantly higher temperature, and applications in topological Weyl superconductivity. However, the number of known magnetic topological semimetals is quite limited to explore different applications experimentally. In this paper, a total of 257 magnetic topological semimetals are identified from two materials databases. Using the information about topological semimetals and their magnetic properties, magnetic topological semimetals are identified considering the spin polarization of the unit cell at the Fermi level, magnetization per atom, and magnetization per cell. Besides classifying, a machine learning model is also used by utilizing a large number of material properties to identify some more magnetic topological semimetals. A large number of magnetic topological semimetals will help experimentalists to explore different interesting phenomena of this emerging frontier at room temperature.
Title: Catalog of magnetic topological semimetals
Description:
Magnetic topological semimetals offer higher mobility due to massless fermion, promising applications in spintronics, anomalous Hall effect at significantly higher temperature, and applications in topological Weyl superconductivity.
However, the number of known magnetic topological semimetals is quite limited to explore different applications experimentally.
In this paper, a total of 257 magnetic topological semimetals are identified from two materials databases.
Using the information about topological semimetals and their magnetic properties, magnetic topological semimetals are identified considering the spin polarization of the unit cell at the Fermi level, magnetization per atom, and magnetization per cell.
Besides classifying, a machine learning model is also used by utilizing a large number of material properties to identify some more magnetic topological semimetals.
A large number of magnetic topological semimetals will help experimentalists to explore different interesting phenomena of this emerging frontier at room temperature.

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