Issue Date | Title | Author(s) |
2009 | Multifractal Analysis of Physiological Data: A Non-Subjective Approach | AMBIKA, G.; Harikrishnan, K.P.; Misra, R.; Dana, Syamal K.; Roy, Prodyot K.; Kurths, Jurgen; Dept. of Physics |
Feb-2009 | Efficient use of correlation entropy for analysing time series data | Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Dept. of Physics |
Oct-2009 | Combined use of correlation dimension and entropy as discriminating measures for time series analysis | Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Dept. of Physics |
Dec-2009 | Computing the multifractal spectrum from time series: An algorithmic approach | Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Amritkar, R.E.; Dept. of Physics |
Apr-2010 | Parametric characterisation of a chaotic attractor using the two scale Cantor measure | Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Amritkar, R.E.; Dept. of Physics |
Jan-2012 | Revisiting the box counting algorithm for the correlation dimension analysis of hyperchaotic time series | Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Dept. of Physics |
Jul-2013 | Characterising chaos-hyperchaos transition using correlation dimension | Harikrishnan, K. P.; AMBIKA, G.; Misra, R.; Dept. of Physics |
Sep-2013 | On the transition to hyperchaos and the structure of hyperchaotic attractors | Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Dept. of Physics |
Nov-2015 | Effect of data gaps on correlation dimension computed from light curves of variable stars | GEORGE, SANDIP V.; AMBIKA, G.; Misra, R.; Dept. of Physics |
Jan-2016 | Uniform framework for the recurrence-network analysis of chaotic time series | Jacob, Rinku; Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Dept. of Physics |
Aug-2016 | Can recurrence networks show small-world property? | Jacob, Rinku; Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Dept. of Physics |
Dec-2016 | Characterization of chaotic attractors under noise: A recurrence network perspective | Jacob, Rinku; Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Dept. of Physics |
Jan-2017 | Measure for degree heterogeneity in complex networks and its application to recurrence network analysis | Jacob, Rinku; Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Dept. of Physics |
Feb-2017 | Cross over of recurrence networks to random graphs and random geometric graphs | Jacob, Rinku; Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Dept. of Physics |
Jul-2017 | Detecting dynamical states from noisy time series using bicoherence | GEORGE, SANDIP V.; AMBIKA, G.; Misra, R.; Dept. of Physics |
Oct-2017 | Is a hyperchaotic attractor superposition of two multifractals? | Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Dept. of Physics |
Dec-2017 | Determining the minimum embedding dimension for state space reconstruction through recurrence networks | Harikrishnan, K. P.; Jacob, Rinku; Misra, R.; AMBIKA, G.; Dept. of Physics |
Jan-2018 | Recurrence network measures for hypothesis testing using surrogate data: Application to black hole light curves | Jacob, Rinku; Harikrishnan, K. P.; Misra, R.; AMBIKA, G.; Dept. of Physics |
Nov-2019 | Classification of close binary stars using recurrence networks | GEORGE, SANDIP V.; Misra, R.; Ambika, G.; Dept. of Physics |
Jan-2020 | Fractal measures and nonlinear dynamics of overcontact binaries | GEORGE, SANDIP V.; Misra, R.; AMBIKA, G.; Dept. of Physics |