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THERMAGINE explores the use of antiferromagnets in nanomagnetic structures to enhance thermal switching dynamics. By integrating advanced microscopy and simulations, the project aims to develop nanoparticles with improved magnetic properties for applications in biomedical fields, particularly in cancer therapy and imag…
Beyond exchange bias systems, where antiferromagnetic layers stabilize ferromagnetic layers, antiferromagnets have seen limited practical use due to their zero net magnetic moment, which hinders both sensing and interaction with the magnetization.
However, in comparison with ferromagnets, antiferromagnets intrinsically display orders of magnitude faster magnetization dynamics, making them highly attractive for technological applications.In most nanotechnological applications, flips of the magnet…
UNIVERSITEIT GENT
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