Hyun An
Papers
1
Total Citations
2
H-Index
1
About
Hyun An’s research lies at the intersection of micromagnetic simulation, soft robotics, and advanced materials, with a focus on designing remotely actuated microstructures. In his most-cited work, “Remote magnetic-field-actuated helical spring magnets: Micromagnetic simulation and analytical modeling” (2022, 2 citations), An introduced a novel helical spring magnet (HSM) concept that enables precise, contactless control over motion. By combining micromagnetic simulations with analytical modeling, he demonstrated that HSMs can be fabricated from either a single magnetic material or micro/nano-scale magnetic particles embedded in a polymer matrix. This innovation opens new pathways for active motion control in microscale devices, with potential applications in biomedical tools, soft actuators, and responsive materials. Though early in his career, An’s work is notable for bridging theoretical modeling and practical design, offering a scalable framework for magnetically driven systems. His contributions are particularly valuable for researchers exploring remote actuation in soft robotics and microelectromechanical systems, where precise, wireless control remains a critical challenge.
Research Focus
Key Achievements
Top Papers
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