Papers
1
Total Citations
6
H-Index
1
About
Jithu Paul is a researcher whose work lies at the intersection of nonlinear dynamics, fluid mechanics, and micro-robotics, with a particular focus on the locomotion of artificial microswimmers for biomedical applications. His most-cited paper, "Nonlinear dynamics and bifurcations of a planar undulating magnetic microswimmer" (2023, 6 citations), explores the complex motion of flagella-inspired robotic swimmers actuated by magnetic fields. In this work, Paul investigates how these tiny devices transition between different swimming modes through bifurcations, offering critical insights into their stability and control. His contributions help bridge the gap between theoretical nonlinear dynamics and the practical design of untethered microswimmers capable of navigating complex biological environments—a key step toward targeted drug delivery and minimally invasive surgery. Though early in his career, Paul’s research is already shaping how engineers model and optimize the locomotion of magnetic microswimmers, providing a foundation for future in vivo applications. His work exemplifies how fundamental physics can drive innovation in biomedical engineering.
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