Application of topological edge states in magnetic resonance imaging
arXiv:2210.09994 · doi:10.1103/PhysRevApplied.20.024076
Abstract
Topological edge states in electromagnetic systems feature a set of attracting fundamental properties and unveil prospective applications based on disorder robustness and tailored localization. Despite active efforts in implementing topologically-protected waveguides in 2D photonic systems, applications of 1D topological systems remain almost uncharted. This letter demonstrates that topological edge modes can be realized in metamaterial-inspired volumetric resonators with a practical application in clinical magnetic resonance imaging (MRI). Performing numerical simulations and experiments with a 1.5 T MR scanner, we reconstruct the associated topological edge mode profiles and demonstrate their feasibility for sensitivity enhancement of conventional radiofrequency coils.
9 pages, 4 figures, 4 supplementary figures
References in corpus (8)
- Topological Photonics
- Topological properties of linear circuit lattices
- Wireless power transfer via topological modes in dimer chains
- Demonstration of topological wireless power transfer
- Higher-order topological states mediated by long-range coupling in -symmetric lattices
- Quantum Hall phase emerging in an array of atoms interacting with photons
- Topological split-ring resonator based metamaterials with symmetry relying on gain and loss
- Topological Photonics on a Small Scale