P. Jisha
University of Calicut
6 Papers
28 Citations
P. Jisha is an academic researcher from University of Calicut. The author has contributed to research in topics: Degree (graph theory) & Order (ring theory). The author has an hindex of 4, co-authored 6 publications.
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Papers
Deformation effects on sub-barrier fusion cross sections in O 16 + Yb 174 , 176
Tapan Rajbongshi,K. Kalita,S. Nath,J. Gehlot,Tathagata Banerjee,Ish Mukul,Ravindra Dhar Dubey,N. Madhavan,Cheng-Jian Lin,A. Shamlath,P. V. Laveen,M. Shareef,Neeraj Kumar,P. Jisha,Padma Sharma +14 more
TL;DR: In this article, the role of hexadecapole nuclear deformation effect on sub-barrier fusion cross sections was investigated, where the evaporation residue (ER) excitation functions were measured at laboratory beam energies in the range of 64.6-103.6 MeV.
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Investigation of fusion hindrance in a soft asymmetric system deep below the barrier
Moin Shaikh,S. Nath,J. Gehlot,Tathagata Banerjee,Ish Mukul,Ravindra Dhar Dubey,A. Shamlath,P. V. Laveen,M. Shareef,A. Jhingan,N. Madhavan,Tapan Rajbongshi,P. Jisha,G. Naga Jyothi,A. Tejaswi,Rudra N. Sahoo,Anjali Rani +16 more
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Search for stabilizing effects of the Z = 82 shell closure against fission
J. Gehlot,S. Nath,Tathagata Banerjee,Ish Mukul,Ravindra Dhar Dubey,A. Shamlath,P. V. Laveen,M. Shareef,Md. Moin Shaikh,A. Jhingan,N. Madhavan,Tapan Rajbongshi,P. Jisha,Santanu Pal +13 more
TL;DR: In this article, the authors investigated the effect of closed proton shells on the survival probability of evaporation residues formed in heavy ion-induced fusion-fission reactions, and found that shell closure does not significantly affect the survival of compound nuclei.
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Evaporation residue cross-section measurements for O 16 + Tl 203 , 205
J. Gehlot,A. M. Vinodkumar,N. Madhavan,S. Nath,Akhil Jhingan,T. Varughese,Tathagata Banerjee,A. Shamlath,P. V. Laveen,M. Shareef,P. Jisha,P. Sandya Devi,G. Naga Jyothi,M. M. Hosamani,I. Mazumdar,V. I. Chepigin,M. L. Chelnokov,A. V. Yeremin,A. K. Sinha,B. R. S. Babu +19 more
TL;DR: In this paper, the transmission efficiency of a gas-filled separator was estimated using a calibration reaction and simulating the evaporation residues angular distributions, and an estimation of non-compound nuclear fission contribution was carried out.
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