Dr. A. Gowrisankar

Assistant Professor
Department of Mathematics, School of Advanced Sciences, Vellore Institute of Technology, Vellore, Tamil Nadu, India


Highest Degree
Ph.D. in Mathematics from The Gandhigram Rural Institute Deemed University, Gandhigram, Tamil Nadu, India

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Area of Interest:

Mathematics
Chaos and Complexity
Nonlinear Dynamics
Signal Processing
Fractional Calculus

Selected Publications

  1. Valarmathi, R. and A. Gowrisankar, 2023. On the variable order fractional calculus of fractal interpolation functions. Fract. Calc. Appl. Anal., 26: 1273-1293.
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  2. Raja, V. and A. Gowrisankar, 2023. On the variable order fractional calculus characterization for the hidden variable fractal interpolation function. Fractal Fract., Vol. 7. 10.3390/fractalfract7010034.
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  3. Priyanka, T.M.C., A. Agathiyan and A. Gowrisankar, 2023. Weyl-marchaud fractional derivative of a vector valued fractal interpolation function with function contractivity factors. J. Anal., 31: 657-689.
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  4. Pradhan, B., A. Gowrisankar, A. Abdikian, S. Banerjee and A. Saha, 2023. Propagation of ion-acoustic wave and its fractal representations in spin polarized electron plasma. Phys. Scr., Vol. 98. 10.1088/1402-4896/acd3bf.
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  5. Priyanka, T.M.C., R. Valarmathi, K. Bingi and A. Gowrisankar, 2022. On approximation properties of fractional integral for a-fractal function. Math. Probl. Eng., Vol. 2022. 10.1155/2022/6409656.
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  6. Agathiyan, A., A. Gowrisankar and T.M.C. Priyanka, 2022. Construction of new fractal interpolation functions through integration method. Results Math., Vol. 77. 10.1007/s00025-022-01666-9.
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  7. Priyanka, T.M.C. and A. Gowrisankar, 2021. Riemann-liouville fractional integral of non-affine fractal interpolation function and its fractional operator. Eur. Phys. J. Spec. Top., 230: 3789-3805.
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  8. Priyanka, T.M.C. and A. Gowrisankar, 2021. Analysis on weyl-marchaud fractional derivative for types of fractal interpolation function with fractal dimension. Fractals, Vol. 29. 10.1142/S0218348X21502157.
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  9. Gowrisankar, A., A.K. Golmankhaneh and C. Serpa, 2021. Fractal calculus on fractal interpolation functions. Fractal Fract., Vol. 5. 10.3390/fractalfract5040157.
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  10. Prasad, P.K., A. Gowrisankar, A. Saha and S. Banerjee, 2020. Dynamical properties and fractal patterns of nonlinear waves in solar wind plasma. Phys. Scr., Vol. 95. 10.1088/1402-4896/ab833c.
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  11. Gowrisankar, A., L. Rondoni and S. Banerjee, 2020. Can India develop herd immunity against COVID-19? Eur. Phys. J. Plus, Vol. 135. 10.1140/epjp/s13360-020-00531-4.
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  12. Fataf, N.A.A., A. Gowrisankar and S. Banerjee, 2020. In search of self-similar chaotic attractors based on fractal function with variable scaling approximately. Phys. Scr., Vol. 95. 10.1088/1402-4896/ab8f45.
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  13. Mohan, C.R., A. Gowrisankar, R. Uthayakumar and K. Jayakumar, 2019. Morphology dependent electrical property of chitosan film and modeling by fractal theory. Eur. Phys. J. Spec. Top., 228: 233-243.
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  14. Gowrisankar, A. and M.G.P. Prasad, 2019. Riemann-liouville calculus on quadratic fractal interpolation function with variable scaling factors. J. Anal., 27: 347-363.
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  15. Ramasamy, U. and G. Arulprakash, 2016. Mid-sagittal plane detection in brain magnetic resonance image based on multifractal techniques. IET Image Process., 10: 751-762.
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  16. Gowrisankar, A. and R. Uthayakumar, 2016. Fractional calculus on fractal interpolation for a sequence of data with countable iterated function system. Mediterr. J. Math., 13: 3887-3906.
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