The 116Sn nucleus was studied via the $\beta^{-}$ decay of 116In utilizing the $8\pi$ spectrometer and its auxiliary detectors at TRIUMF-ISAC. The resulting K-shell conversion coefficients, K/L ratios, and multipole mixing ratios are presented. The $2_{3}^{+} \rightarrow 2_{1}^{+} 931$ keV and $ 2_{2}^{+} \rightarrow 2_{1}^{+} 819$ keV transition mixing ratios were re-measured and found to be $ \delta = +1.8_{-0.5}^{+0.7}$ and $ -1.83(8)$, respectively. Newly measured mixing ratios for transitions among the low-lying $ I^{\pi} = 4^{+}$ states in 116Sn, when combined with $\gamma$-ray intensity data, suggest that the 2529 keV $4_{2}^{+}$ state possesses a neutron broken-pair admixture in addition to its dominant proton 2p-2h component
The half-life of the 4(2)(+) state of the 2p-2h proton intruder band of Sn-116 has been measured wit...
Abstract The double-beta decay of 116Cd into excited states of 116Sn is experimentally and theoret...
An extensive study of pairing effects in the Sn isotopes is carried out. The pairing Hamiltonian is ...
The β– decay of 116m1In (Iπ = 5+), studied using the 8π array at TRIUMF-ISAC, predominantly populate...
The 116Sn nucleus contains a collective rotational band originating from proton $\pi$ 2p-2h excitati...
The nucleus 116Sn has been studied via the neutron pickup reactions 117Sn(d,t)116Sn and 117Sn(3He, α...
International audienceThe$^{116}$Sn nucleus contains a collective rotational band originating from p...
The even-even tin isotopes are known to exhibit shape coexistence, the phenomenon where multiple sha...
The excitation-energy range 3.5-7.2 MeV in the nucleus Sn-116 has been investigated via the proton s...
The excitation-energy range 3.5-7.2 MeV in the nucleus Sn-116 has been investigated via the proton s...
The Sn-116(p, t) Sn-114 reaction has been studied in a high-resolution experiment at an incident pro...
We have used the (d,He-2) reaction to obtain the GT(+) strength distribution for Sn-116 ->In-116 ...
Measurements have been made of certain angular correlations as well as of several internal conversio...
A beta-decay unstable isomer with a half-life of 14.1 y at 264 keV in 113Cd is a branching point in ...
International audienceWe performed a γ -particle coincidence experiment for the 60Ni+116Sn system to...
The half-life of the 4(2)(+) state of the 2p-2h proton intruder band of Sn-116 has been measured wit...
Abstract The double-beta decay of 116Cd into excited states of 116Sn is experimentally and theoret...
An extensive study of pairing effects in the Sn isotopes is carried out. The pairing Hamiltonian is ...
The β– decay of 116m1In (Iπ = 5+), studied using the 8π array at TRIUMF-ISAC, predominantly populate...
The 116Sn nucleus contains a collective rotational band originating from proton $\pi$ 2p-2h excitati...
The nucleus 116Sn has been studied via the neutron pickup reactions 117Sn(d,t)116Sn and 117Sn(3He, α...
International audienceThe$^{116}$Sn nucleus contains a collective rotational band originating from p...
The even-even tin isotopes are known to exhibit shape coexistence, the phenomenon where multiple sha...
The excitation-energy range 3.5-7.2 MeV in the nucleus Sn-116 has been investigated via the proton s...
The excitation-energy range 3.5-7.2 MeV in the nucleus Sn-116 has been investigated via the proton s...
The Sn-116(p, t) Sn-114 reaction has been studied in a high-resolution experiment at an incident pro...
We have used the (d,He-2) reaction to obtain the GT(+) strength distribution for Sn-116 ->In-116 ...
Measurements have been made of certain angular correlations as well as of several internal conversio...
A beta-decay unstable isomer with a half-life of 14.1 y at 264 keV in 113Cd is a branching point in ...
International audienceWe performed a γ -particle coincidence experiment for the 60Ni+116Sn system to...
The half-life of the 4(2)(+) state of the 2p-2h proton intruder band of Sn-116 has been measured wit...
Abstract The double-beta decay of 116Cd into excited states of 116Sn is experimentally and theoret...
An extensive study of pairing effects in the Sn isotopes is carried out. The pairing Hamiltonian is ...