Faculty Details

Neelima M. Gupte

Professor (Emeritus)

HSB 312
Ph.D. SUNY Stony Brook

πŸ“ž 044 - 2257 4861
βœ‰οΈ gupte@iitm.ac.in

Areas of Interest

Current Research

Students

Current PhD Students

βœ” PH13D203 MRINAL SARKAR

βœ” PH14D201 RABINDEV BISHAL

βœ” PH15D015 MALAYAJA CHUTANI

βœ” PH15D049 RUBY SAHA

Recent Publications

  • βœ” The transition to synchronization on branching hierarchical lattices. A. Roy and N. Gupte. Chaos. 32. 013120. 2022.
  • βœ” Multifractal analysis of birdsong and its correlation structure. R. Bishal,Ò€† Ò€† G.Ò€†B. Mindlin, and N. Gupte. Phys. Rev. E. 105. 014118. 2022.
  • βœ” Phase synchronization in the two dimensional Kuramoto model: Vortices and Duality. M. Sarkar and N. Gupte. Phys. Rev. E. 103. 032204. 2021.
  • βœ” Precursors of the El Ni\~no phenomenon: A climate network analysis. R. Sonone and N Gupte. Phys. Rev. E. 103. L040301. 2021.
  • βœ” Hysteresis and synchronization processes of Kuramoto oscillators on high-dimensional simplicial complexes with competing simplex-encoded couplings. MÒ€† Ò€† Chutani, B Tadic, andÒ€† Ò€† N. Gupte. Phys. Rev. E. 104. 034206. 2021.
  • βœ” Characterizing the complexity of time series networks of dynamical systems: A simplicial approach. M. Chutani, N. Rao, N. N. Thyagu, andÒ€† Ò€† N. Gupte. Chaos. 30. 013109. DOI: https://doi.org/10.1063/1.5100362. 2020.
  • βœ” Chimera states in globally coupled sine circle map lattices: Spatiotemporal intermittency and hyperchaos. J. Singha andÒ€† Ò€† N. Gupte. Phys. Letts.Ò€† Ò€† A. 384. 126225. 2020.
  • βœ” Nonlinear Chemical Reactions: A Comparison Between an Experiment and a Theoretical Model. A. Rajans,Ò€† Ò€† N. Gupte and P.C. Deshmukh. Resonance. 25. 381. 2020.
  • βœ” Chimera states in coupled map lattices: Spatiotemporally intermittent behaviour and an equivalent cellular automaton. J. Singha and N. Gupte. Chaos. 30. 113102. 2020.
  • βœ” Signatures of Climatic Phenomena in Climate Networks: Cyclones. El Nino and LaNina, R. Sonone, R. Saha and N. Gupte. Indian Academy of Sciences Conference Series. 3. 143. 2020.

Teaching

βœ” 2017 : (Jan - May) - PH5500 Dynamical Systems; (Jul - Nov) - PH5830 Advanced Dynamical Systems

βœ” 2018 : (Jul - Nov) - PH5490 Advanced Statistical Physics

βœ” 2019 : (Jan - May) - PH5720 Numerical Methods and Programming Lab; (Jul - Nov) - PH1030 Physics Laboratory I / PH5730 Methods of Computational Physics

βœ” 2020 : (Jan - May) - PH1030 Physics Laboratory I / PH5500 Dynamical Systems; (Jul - Nov) - PH1030 Physics Laboratory I / PH3500 Classical Physics / PH7080 Foundations in Theoretical Physics

βœ” 2021 : (Jan - May) - PH5500 Dynamical Systems ; (Jul - Nov) - ID5080 Complex Networks

βœ” 2022 : (Jan - May) - EP3120 Statistical Physics and Applications / EP3180 Industrial Lecture / EP3610 Industrial Training / EP4040 Seminar / PH1040 Physics Laboratory II / PH7080 Foundations in Theoretical Physics ; (Jul - Nov) - PH5210 Condensed Matter Physics II

βœ” 2023 : (Jan - May) - PH1030 Physics Laboratory I