Cross talk between experimental data and simple validation of shell closure in pre-actinides
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| Main Authors: | , , , , , , , , , , , , , , , |
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| Format: | Preprint |
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2025
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| _version_ | 1866915449377128448 |
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| author | Dubey, Punit Upadhyay, Mahima Choudhary, Mahesh Singh, Namrata Paul, Sriya Singh, Shweta Saneesh, N. Kumar, Mohit Prajapati, Rishabh Golda, K. S. Jhingan, Akhil Sugathan, P. Sadhukhan, Jhilam Aggarwal, Raghav Kiran Kumar, Ajay |
| author_facet | Dubey, Punit Upadhyay, Mahima Choudhary, Mahesh Singh, Namrata Paul, Sriya Singh, Shweta Saneesh, N. Kumar, Mohit Prajapati, Rishabh Golda, K. S. Jhingan, Akhil Sugathan, P. Sadhukhan, Jhilam Aggarwal, Raghav Kiran Kumar, Ajay |
| contents | Two back-to-back experiments, 28Si + 178Hf and 28Si + 186W, were intentionally conducted to validate the role of shell closure in pre-actinides by studying neutron multiplicity in compound nucleus (CN) 206Rn and 214Ra. In the first experiment, Dubey et al. [Phys. Rev. C 112, L011602 (2025)], we established the influence of the neutron shell closure. In the present work, the CN 214Ra was deliberately selected to investigate the dependence of the total neutron multiplicity (Mtotal) on the proton number (Z), while keeping the neutron number constant at N = 126 in the pre-actinide region. The objective of the study is two-fold : (i) to examine the effect of proton shell closure when moving away from Z = 82, and (ii) to correlate the present results on proton shell closure with our previous finding on neutron shell closure. We have also used the previous reported data for N = 126 isotones 210Po, 212Rn, and 213Fr to establish the validation of shell closure. A systematic increase in Mtotal with increasing Z was observed from Z = 82 to Z = 88. Furthermore, comparison of the present results on proton shell closure with our earlier neutron shell closure observation, reveals that the cross-correlation between neutron and proton shell closure shows a systematic increase in Mtotal as one moves away from 208Pb, whether along isotonic or isotopic chains. |
| format | Preprint |
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arxiv_https___arxiv_org_abs_2508_12864 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Cross talk between experimental data and simple validation of shell closure in pre-actinides Dubey, Punit Upadhyay, Mahima Choudhary, Mahesh Singh, Namrata Paul, Sriya Singh, Shweta Saneesh, N. Kumar, Mohit Prajapati, Rishabh Golda, K. S. Jhingan, Akhil Sugathan, P. Sadhukhan, Jhilam Aggarwal, Raghav Kiran Kumar, Ajay Nuclear Experiment Two back-to-back experiments, 28Si + 178Hf and 28Si + 186W, were intentionally conducted to validate the role of shell closure in pre-actinides by studying neutron multiplicity in compound nucleus (CN) 206Rn and 214Ra. In the first experiment, Dubey et al. [Phys. Rev. C 112, L011602 (2025)], we established the influence of the neutron shell closure. In the present work, the CN 214Ra was deliberately selected to investigate the dependence of the total neutron multiplicity (Mtotal) on the proton number (Z), while keeping the neutron number constant at N = 126 in the pre-actinide region. The objective of the study is two-fold : (i) to examine the effect of proton shell closure when moving away from Z = 82, and (ii) to correlate the present results on proton shell closure with our previous finding on neutron shell closure. We have also used the previous reported data for N = 126 isotones 210Po, 212Rn, and 213Fr to establish the validation of shell closure. A systematic increase in Mtotal with increasing Z was observed from Z = 82 to Z = 88. Furthermore, comparison of the present results on proton shell closure with our earlier neutron shell closure observation, reveals that the cross-correlation between neutron and proton shell closure shows a systematic increase in Mtotal as one moves away from 208Pb, whether along isotonic or isotopic chains. |
| title | Cross talk between experimental data and simple validation of shell closure in pre-actinides |
| topic | Nuclear Experiment |
| url | https://arxiv.org/abs/2508.12864 |