Kejia Zhu
Papers
2
Total Citations
66
H-Index
2
About
Kejia Zhu is a leading researcher in the field of wireless power transfer (WPT), with a focus on leveraging advanced physical phenomena to enhance energy transmission efficiency and control. Their work centers on the application of parity-time (PT) and anti-PT symmetry in electronic circuits, as well as the exploration of topological edge states for directional energy flow. Zhu's major contributions include the demonstration of "level pinning" in anti-PT-symmetric circuits, a breakthrough that enables robust and efficient WPT even under dynamic conditions, as highlighted in their 2023 paper (41 citations). They also pioneered the use of actively controlled asymmetric edge states to achieve directional WPT, a concept detailed in their 2021 work (25 citations) that promises targeted energy delivery for applications ranging from medical implants to electric vehicles. With a growing citation footprint, Zhu’s research is shaping the next generation of WPT systems, offering solutions for long-range, stable, and controllable power transfer. Their innovative integration of non-Hermitian physics and circuit design marks a significant step toward practical, high-performance wireless energy networks.
Research Focus
Key Achievements
Top Papers
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