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Dive into the research topics where A. Wakhle is active.

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Featured researches published by A. Wakhle.


Physics Letters B | 2012

Influence of entrance-channel magicity and isospin on quasi-fission

C. Simenel; David Hinde; R. du Rietz; Mahananda Dasgupta; M. Evers; C.J. Lin; D. H. Luong; A. Wakhle

The role of spherical quantum shells in the competition between fusion and quasi-fission is studied for reactions forming heavy elements. Measurements of fission fragment mass distributions for different reactions leading to similar compound nuclei have been made near the fusion barrier. In general, more quasi-fission is observed for reactions with non-magic nuclei. However, the


Physical Review C | 2015

Reduced quasifission competition in fusion reactions forming neutron-rich heavy elements

K. Hammerton; Z. Kohley; David Hinde; Mahananda Dasgupta; A. Wakhle; E. Williams; V. E. Oberacker; A. S. Umar; I. P. Carter; K. J. Cook; J. Greene; D. Y. Jeung; D. H. Luong; S. D. McNeil; C. S. Palshetkar; D. C. Rafferty; C. Simenel; K. Stiefel

^{40}


Physical Review C | 2011

Measured g factors and the tidal-wave description of transitional nuclei near A=100

S. K. Chamoli; A.E. Stuchbery; S. Frauendorf; J. Sun; Y. Gu; R. F. Leslie; P. T. Moore; A. Wakhle; M. C. East; Tibor Kibedi; A. N. Wilson

Ca+


Physical Review Letters | 2018

Exploring Zeptosecond Quantum Equilibration Dynamics: From Deep-Inelastic to Fusion-Fission Outcomes in Ni58+Ni60 Reactions

E. Williams; K. Sekizawa; David Hinde; C. Simenel; Mahananda Dasgupta; I. P. Carter; K. J. Cook; D. Y. Jeung; S. D. McNeil; C. S. Palshetkar; D. C. Rafferty; A. Wakhle

^{208}


arXiv: Nuclear Theory | 2013

Quantum microscopic approach to low-energy heavy ion collisions

C. Simenel; A. Wakhle; Benoît Avez

Pb reaction is an exception, showing strong evidence for quasi-fission, though both nuclei are doubly magic. Time-dependent Hartree-Fock calculations predict fast equilibration of


EPJ Web of Conferences Volume 38, 2012 NSRT12 - International Conference on Nuclear Structure and Related Topics | 2012

Effects of Nuclear Structure on Quasi-fission

C. Simenel; A. Wakhle; Benoît Avez; David Hinde; R. du Rietz; Mahananda Dasgupta; M. Evers; C.J. Lin; D. H. Luong

N/Z


arXiv: Nuclear Theory | 2013

Probing quantum many-body dynamics in nuclear systems

C. Simenel; Mahananda Dasgupta; David Hinde; Anatoli Kheifets; A. Wakhle

in the two fragments early in the collision. This transfer of nucleons breaks the shell effect, causing this reaction to behave more like a non-magic one in the competition between fusion and quasi-fission. Future measurements of fission in reactions with exotic beams should be able to test this idea with larger


AIP Conference Proceedings: IX LATIN AMERICAN SYMPOSIUM ON NUCLEAR PHYSICS AND APPLICATIONS | 2012

Effects of Nuclear Structure in Heavy Element Formation Dynamics

David Hinde; R. du Rietz; C. Simenel; Mahananda Dasgupta; A. Wakhle; M. Evers; D. H. Luong

N/Z


Proceedings of The 26th International Nuclear Physics Conference — PoS(INPC2016) | 2017

Competition between Fusion and Quasi-fission in the Formation of Super-heavy Elements

David Hinde; Mahananda Dasgupta; Dongyun Jeung; G. Mohanto; E. Prasad; C. Simenel; E. C. Simpson; A. Wakhle; E. Williams; I. P. Carter; K.J. Cooke; Sunil Kalkal; D. C. Rafferty; J. Walshe

asymmetries.


Journal of Physics: Conference Series | 2013

Investigating quasi-fission dynamics through mass-angle distributions

David Hinde; Mahananda Dasgupta; M. Evers; C.J. Lin; D. H. Luong; R. du Rietz; C. Simenel; A. Wakhle; E. Williams

This work is supported by the National Science Foundation under Grants No. PHY-1102511 and No. IIA-1341088, by the U.S. Department of Energy under Grant No. DE-FG02- 96ER40975 with Vanderbilt University, and the Australian Research Council Grants No. DP110102858, No. DP140101337, No. FL110100098, No. DP130101569, No. FT120100760, and No. DE140100784. This material is based upon work supported by the Department of Energy National Nuclear Security Administration under Award No. DE-NA0000979. This material is based upon work supported by the U.S. Department of Energy, Office of Science, Office of Nuclear Physics, under Contract No. DE-AC02-06CH11357. This research used resources of ANL’s ATLAS facility, which is a DOE Office of Science User Facility.

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David Hinde

Australian National University

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Mahananda Dasgupta

Australian National University

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C. Simenel

Australian National University

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D. H. Luong

Australian National University

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E. Williams

Australian National University

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M. Evers

Australian National University

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I. P. Carter

Australian National University

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D. C. Rafferty

Australian National University

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K. J. Cook

Australian National University

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R. du Rietz

Australian National University

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