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Possible low-lying levels in Dy165 deduced from neutron capture γ rays

M. A. Islam, W. V. Prestwich, T. J. Kennett

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Abstract

The high-energy thermal neutron capture $\ensuremath{\gamma}$ rays in $^{165}\mathrm{Dy}$ have been studied. Analysis has revealed 15 new levels below an excitation energy of 1650 keV in addition to 14 that were previously reported. The spins of the newly observed levels are most likely \textonehalf{} or $\frac{3}{2}$.NUCLEAR REACTIONS $^{164}\mathrm{Dy}(n, y)^{165}\mathrm{Dy}$; thermal; measured ${E}_{\ensuremath{\gamma}}$; identified levels.

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What this paper is about

The high-energy thermal neutron capture $\ensuremath{\gamma}$ rays in $^{165}\mathrm{Dy}$ have been studied. Analysis has revealed 15 new levels below an excitation energy of 1650 keV in addition to 14 that were previously reported. The spins of the newly observed levels are most likely \textonehalf{} or $\frac{3}{2}$.NUCLEAR REACTIONS $^{164}\mathrm{Dy}(n, y)^{165}\mathrm{Dy}$; thermal; measured ${E}_{\ensuremath{\gamma}}$; identified levels.

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Available abstract

The high-energy thermal neutron capture $\ensuremath{\gamma}$ rays in $^{165}\mathrm{Dy}$ have been studied. Analysis has revealed 15 new levels below an excitation energy of 1650 keV in addition to 14 that were previously reported. The spins of the newly observed levels are most likely \textonehalf{} or $\frac{3}{2}$.NUCLEAR REACTIONS $^{164}\mathrm{Dy}(n, y)^{165}\mathrm{Dy}$; thermal; measured ${E}_{\ensuremath{\gamma}}$; identified levels.

Key concepts: Physics, Spins, Excitation, Energy (signal processing), Atomic physics, Condensed matter physics, Quantum mechanics

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