INSTITUTIONAL DIGITAL REPOSITORY

Browsing by Author "Rai, N. K."

Browsing by Author "Rai, N. K."

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  • Minda, M. M.; Kumar, R.; Napiorkowski, P. J.; Saxena, M.; Duttd, S.; Agarwal, A.; Ahmed, I.; Bhattacharya, S.; Jhingan, A.; Kaur, J.; Habior, M. K.; Kumar, M.; Kumar, S.; Kumar, D.; Nanal, V.; Palit, R.; Rai, N. K.; Shuaib, M.; Soodl, A.; Stolarz, A.; Trivedi, T.; Tyagi, A. K.; Bhowmik, R. K.; Wollersheim, H. J. (2021-08-25)
    In order to gain further information on the electromagnetic properties of the low-lying states in 45Sc, a Coulomb excitation measurement was carried out at the IUAC, New Delhi. The 45Sc target nuclei were Coulomb excited ...
  • Biswas, S.; Chakraborty, A.; Jhingan, A.; Arora, D.; Behera, B. R.; Biswas, R.; Deb, N. K.; Ghugre, S. S.; Giri, P. K.; Golda, K. S.; Kaur, G.; Kumar, A.; Kumar, M.; Mukherjee, B.; Nayak, B. K.; Parihari, A.; Rai, N. K.; Rai, S.; Raut, R.; Sahoo, R. N.; Sinha, A. K. (2021-06-13)
    Barrier distributions for the 28Si + 142,150Nd systems were extracted from large-angle quasielastic scattering measurements. The measurements were carried out over a wide range of incident beam energies around the Coulomb ...
  • Minda, M. M.; Napiorkowski, P. J.; Kumar, R.; Saxena, M.; Dutt, S; Agarwal, A.; Ahmed, I.; Bhattacharya, S.; Jhingan, A.; Kaur, J.; Habior, M. K.; Kumar, M.; Kumar, S.; Kumar, D.; Nanal, V.; Palit, R.; Rai, N. K.; Shuaib, M.; Sood, A.; Stolarz, A.; Trivedi, T.; Tyagi, A. K.; Bhowmik, R. K.; Wollersheim, H. J. (2021-06-16)
    A Coulomb-excitation measurement to study low-energy electromagnetic properties of 45Sc has been performed at the IUAC facility in New Delhi, India using a 70 MeV 32S projectile from the 15UD tandem accelerator. The ...
  • Deb, N. K.; Kalita, K.; Rashid, H. I.; Nath, S.; Gehlot, J.; Madhavan, N.; Biswas, R.; Sahoo, R. N.; Giri, P. K.; Das, A.; Rajbongshi, T.; Parihari, A.; Rai, N. K.; Biswas, S.; Khushboo; Mahato, A.; Roy, B. J.; Vinayak, A.; Rani, A. (2021-06-12)
    Background: In heavy-ion-induced fusion reactions, cross sections in the sub-barrier region are enhanced compared to predictions of the one-dimensional barrier penetration model. This enhancement is often understood by ...