Reaction 6Li.

Phys Rev C Nucl Phys

Published: November 1988

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http://dx.doi.org/10.1103/physrevc.38.2478DOI Listing

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A high-precision global potential energy surface (PES) of the Li system is constructed based on high-level calculations, and the root-mean-square error is 5.54 cm. The short-range of the PES is fitted by the fundamental invariant neural network (FI-NN) method, while the long-range uses a function with an accurate asymptotic potential energy form, and the two regions are connected by a switching function.

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Department of Physics, Indian Institute of Technology Roorkee, Roorkee, 247667, Uttarakhand, India. Electronic address:

The article reports the production yields of the medically relevant Ru radionuclides and other co-produced radionuclides from Li-induced reactions on Nb target within the 20-45 MeV energy range. The residues were measured employing the activation technique followed by the offline γ-spectroscopy. Statistical model calculations using EMPIRE3.

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The operation of fusion reactors is based on the reaction that occurs when two heavy hydrogen isotopes, deuterium and tritium, combine to form helium and a neutron with an energy of 14.1 MeV D + T → He + n. For this reaction to occur, it is necessary to produce tritium in the facility itself, as tritium is not common in nature.

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Yield of residues produced in Li reaction on Ta: A comparative analysis for Os.

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Department of Physics, Indian Institute of Technology Roorkee, Roorkee, 247667, Uttarakhand, India. Electronic address:

The present work reports an analysis of the production yield of residues from the Li + Ta reaction in a low-energy regime. The experimental yield of Os, Os, Os, Re, Ta, Ta, and Ta have been measured in the 27-43 MeV energy window and compared with equilibrium and pre-equilibrium model calculations under the framework of the nuclear reaction model code, EMPIRE-3.2.

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