Symmetry classification framework for unconventional magnetism identifies hybrid-parity and unconstrained-parity classes beyond altermagnets and odd-parity magnets, with computational example of combined spintronic effects.
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9 Pith papers cite this work. Polarity classification is still indexing.
representative citing papers
Sulphur divacancies in MoS2 dominate nonradiative recombination with capture coefficients of ~10^{-9} cm^3/s due to strong lattice relaxation enabling efficient multiphonon capture, while single vacancies and other defects contribute far less.
Geometric percolation of Ti vacancies in 1T-TiS2 monolayers triggers half-metallic ferromagnetism at xc ≈ 12.5%, creating a functional window of 11% < x < 15% with 100% spin-polarized transport.
Isostructural CeCN5 and TbCN5 show Ce in 4+ and Tb in 3+ oxidation states, producing insulating versus metallic behavior because the polymeric C-N network distributes the extra electron from Ce.
Zero net magnetization imposes geometric constraints that enforce spin degeneracy in bands of spin-orbit-free compensated magnets even without conventional spin symmetry protection.
Ab initio molecular dynamics simulations of shocked H-He mixtures reproduce experimental reflectivity values without discontinuities at conditions where demixing was previously inferred from data.
First-principles study demonstrates spin-orbit torque switching of Néel order and layer-resolved Chern marker in band-inverted antiferromagnetic bilayer MnBi2Te4.
In Eu5Sn2As6, magnetic field enhances phonon thermal conductivity by lifting spin degeneracy, suppressing exchange-frustrated scattering and thereby driving colossal magnetoresistance.
Ta₂CS₂ MXene hosts valley-orbital and orbital-layer couplings that, together with spin-orbit interaction and electric polarization, yield valley-dependent orbital moments and layer-dependent spin splitting, which appear in orbital and spin Hall effects.
citing papers explorer
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Unconventional Magnetism: Symmetry Classification, Hybrid-parity and Unconstrained-parity Classes
Symmetry classification framework for unconventional magnetism identifies hybrid-parity and unconstrained-parity classes beyond altermagnets and odd-parity magnets, with computational example of combined spintronic effects.
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Dominant Role of Sulphur divacancy in Charge Trapping Dynamics in MoS$_2$
Sulphur divacancies in MoS2 dominate nonradiative recombination with capture coefficients of ~10^{-9} cm^3/s due to strong lattice relaxation enabling efficient multiphonon capture, while single vacancies and other defects contribute far less.
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Geometric Percolation Threshold Defines Half-Metallic Window in Vacancy-Doped Titanium disulfides
Geometric percolation of Ti vacancies in 1T-TiS2 monolayers triggers half-metallic ferromagnetism at xc ≈ 12.5%, creating a functional window of 11% < x < 15% with 100% spin-polarized transport.
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Electronic structure and oxidation states in high-pressure synthesized isostructural CeCN$_5$ and TbCN$_5$
Isostructural CeCN5 and TbCN5 show Ce in 4+ and Tb in 3+ oxidation states, producing insulating versus metallic behavior because the polymeric C-N network distributes the extra electron from Ce.
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Geometric Spin Degeneracy in Spin-Orbit-Free Compensated Magnets
Zero net magnetization imposes geometric constraints that enforce spin degeneracy in bands of spin-orbit-free compensated magnets even without conventional spin symmetry protection.
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First-principles simulation of shocked H-He mixture along the principal Hugoniot
Ab initio molecular dynamics simulations of shocked H-He mixtures reproduce experimental reflectivity values without discontinuities at conditions where demixing was previously inferred from data.
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Spin-orbit torque switching of N\'eel order in band-inverted antiferromagnetic bilayer MnBi$_2$Te$_4$
First-principles study demonstrates spin-orbit torque switching of Néel order and layer-resolved Chern marker in band-inverted antiferromagnetic bilayer MnBi2Te4.
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Colossal Magnetoresistance and Phonon Driven Exchange Dynamics in Eu$_5$Sn$_2$As$_6$
In Eu5Sn2As6, magnetic field enhances phonon thermal conductivity by lifting spin degeneracy, suppressing exchange-frustrated scattering and thereby driving colossal magnetoresistance.
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Interplay of Valley, Orbital, Spin, and Layer Degrees of Freedom in Ta$_2$CS$_2$ MXene
Ta₂CS₂ MXene hosts valley-orbital and orbital-layer couplings that, together with spin-orbit interaction and electric polarization, yield valley-dependent orbital moments and layer-dependent spin splitting, which appear in orbital and spin Hall effects.