The 1p transfer channel in the 27Al(12C, 11B)28Si reaction has been studied at Elab = 73, 81 and 85 MeV. The finite range distorted wave Born approximation calculations have been performed using phenomenological optical model potential to analyze the angular distributions for 3 transitions populating the 0.0, 1.78 and 4.62 MeV states of 28Si and 2 transitions populating the 2.12 and 4.44 MeV states of 11B via the 27Al(12C, 11B)28Si reaction. The spectroscopic strengths as well as spectroscopic factors have been extracted for all the five states. The extracted strength values are compared with shell model calculations.
@article{arxiv.1107.5674,
title = {Study of transfer reaction channel in $^{12}$C + $^{27}$Al system},
author = {Aparajita Dey and M. Biswas and C. Bhattacharya and T. K. Rana and S. Kundu and K. Banerjee and S. Bhattacharya and T. K. Ghosh and G. Mukherjee and J. K. Meena and D. Gupta and P. Mali and S. Mukhopadhyay and D. Pandit and H. Pai and S. R. Banerjee and Suresh Kumar and A. Srivastava and A. Chatterjee and K. Ramachandran and K. Mahata and S. Pandit and S. Santra},
journal= {arXiv preprint arXiv:1107.5674},
year = {2011}
}