![]() ![]() This policy sets out the data protection principles and procedures pertaining to Ilifa Labantwana, a Non Profit Company registered in the Republic of South Africa under Registration Number 2019/094849/08, whose registered office is at Douglas Murray House, 1 Wodin Road, Claremont, Cape Town (the “Organisation”) (“Policy”).ġ.2. PERSONAL INFORMATION BREACH NOTIFICATIONġ.1. TRANSFERRING PERSONAL DATA TO ACROSS BORDERSĢ5. ![]() TECHNICAL AND ORGANISATIONAL SECURITY MEASURESĢ4. OBJECTIONS TO PROCESSING PERSONAL INFORMATIONĢ3. ADEQUATE, RELEVANT, AND LIMITED DATA PROCESSINGġ7. SPECIFIED, EXPLICIT, AND LEGITIMATE PURPOSESġ1. PROCESSING OF PERSONAL INFORMATION RELATING TO CHILDRENġ0. PROCESSING OF SPECIAL PERSONAL INFORMATIONĩ. The unique performance of MnBr3 will broaden the applicability of two-dimensional magnetism in widespread application.8. The electronic band structure and magnetic anisotropy energy can be further modulated by applying biaxial and uniaxial strain, as well as introducing interlayer coupling in the bilayer. Meanwhile, both the Chern number sign and the chiral edge current can be tuned by changing the magnetization direction. With considering the spin-orbit coupling effect, the Dirac cone around the Fermi level in the spin-up channel opens a gap of 35 meV, becoming a topological nontrivial insulator with a Chern number of 1. A change of magnetization direction significantly modifies the electronic band structure. MnBr3 monolayer holds the property of in-plane easy magnetization. The lattice dynamics and thermodynamic stabilities are demonstrated by calculating phonon spectra and molecular dynamics simulations. ![]() In this work, we predict the MnBr3 monolayer to be an intrinsic Dirac half-metal based on first-principles calculations. Dirac half-metals with massless fermions hold great promise in spintronic devices and optoelectronic devices associated with nontrivial band topologies. Advancing technology and growing interdisciplinary fields raise the need for new materials that simultaneously possess several significant physics quantities to meet human demands. ![]()
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