About
Prof. Awadhesh Prasad received the M. Sc. and Ph. D. degrees in physics from Jawaharlal Nehru University, New Delhi, India, in 1995 and 1999, respectively. He is currently a faculty member with the Department of Physics and Astrophysics, University of Delhi, New Delhi, India from 2003. From 2000 to 2003, he was a Post-Doctoral Fellow with Arizona State University, Tempe, USA.
He has over 150 publications to his credit, including three review papers on different topics on strange nonchaotic attractors, amplitude death, and hidden attractors. He has supervised several Ph.D. and master/bachelor's students. He has been awarded with MaxPlanck Fellowship, MPIPKS Dresden, Germany, July 2011 – June 2012, and JSPS Invitation Fellowship, TUAT, Tokyo, May 25 – July 18, 2015.
His current research interests include nonlinear dynamics, modeling and analysis of nonlinear time series, and applications of chaos theory to physical and biomedical signals and systems. Prof. Prasad is currently an Editor of Chaos, Solitons & Fractals (Elsevier Science), and Associate Editor of Pramana - Journal of Physics.
Employment
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University of Delhi Professor2003 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (105)
- Bifurcation delay in nonlinear systems with time-scaling Save
- Exactly solvable Stuart-Landau models in arbitrary dimensions Save
- Role of UPOs in Characterizing the Hidden Attractors: A Comparison with Self-Excited Attractors Save
- Phase slips in coupled oscillator systems Save
- Saddle-node bifurcation of periodic orbit route to hidden attractors Save
- Transition from inhomogeneous limit cycles to oscillation death in nonlinear oscillators with similarity-dependent coupling Save
- Model-free prediction of multistability using echo state network Save
- Generation of aperiodic motion due to sporadic collisions of camphor ribbons Save
- Traveling of extreme events in network of counter-rotating nonlinear oscillators Save
- Ordered slow and fast dynamics of unsynchronized coupled phase oscillators Save