Strain engineering drives altermagnetic-to-ferrimagnetic transitions and activates anomalous transport responses in RuO2 and MnF2 via symmetry breaking.
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cond-mat.mtrl-sci 2years
2026 2verdicts
UNVERDICTED 2representative citing papers
Monolayer CrC2N4 exhibits a direct band gap at K/K' valleys with 51.9 meV valence-band spin splitting from SOC and strain-tunable gap and optical response from 1.987 to 1.421 eV.
citing papers explorer
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Strain induced magnetic phase transition and anomalous transport phenomena in RuO$_2$ and MnF$_2$
Strain engineering drives altermagnetic-to-ferrimagnetic transitions and activates anomalous transport responses in RuO2 and MnF2 via symmetry breaking.
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Robust Spin Splitting and Strain-Controlled Optical Response in Monolayer CrC2N4 for Valleytronic and Optoelectronic Applications
Monolayer CrC2N4 exhibits a direct band gap at K/K' valleys with 51.9 meV valence-band spin splitting from SOC and strain-tunable gap and optical response from 1.987 to 1.421 eV.