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Main Authors: Paxman, Charlie James, Zanon, Irene, Clément, Emmanuel, Goasduff, Alain, Menendez, Javier, Miyagi, Takayuki, Assié, Marlene, Ciemala, Michal, Flavigny, Freddy, Lemasson, Antoine, Matta, Adrien, Ramos, Diego, Rejmund, Mauricy
Format: Preprint
Published: 2026
Subjects:
Online Access:https://arxiv.org/abs/2601.03053
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author Paxman, Charlie James
Zanon, Irene
Clément, Emmanuel
Goasduff, Alain
Menendez, Javier
Miyagi, Takayuki
Assié, Marlene
Ciemala, Michal
Flavigny, Freddy
Lemasson, Antoine
Matta, Adrien
Ramos, Diego
Rejmund, Mauricy
author_facet Paxman, Charlie James
Zanon, Irene
Clément, Emmanuel
Goasduff, Alain
Menendez, Javier
Miyagi, Takayuki
Assié, Marlene
Ciemala, Michal
Flavigny, Freddy
Lemasson, Antoine
Matta, Adrien
Ramos, Diego
Rejmund, Mauricy
contents The single-neutron transfer reaction $^{19}$O(d,p$γ$)$^{20}$O has been performed at GANIL, populating states up to and above the neutron separation energy. Bound states populated by s-wave and d-wave transfer have been observed with improved experimental angular distributions. Critically, several unbound states between 7.6 MeV and 9.8 MeV have been accessed for the first time through the 19O(d,p) channel, and isolated via particle-$γ$ spectroscopy.
format Preprint
id arxiv_https___arxiv_org_abs_2601_03053
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Unbound states in $^{19}$O(d,p$γ$)$^{20}$O: tracing the $ν$(d$_{3/2}$) orbital
Paxman, Charlie James
Zanon, Irene
Clément, Emmanuel
Goasduff, Alain
Menendez, Javier
Miyagi, Takayuki
Assié, Marlene
Ciemala, Michal
Flavigny, Freddy
Lemasson, Antoine
Matta, Adrien
Ramos, Diego
Rejmund, Mauricy
Nuclear Experiment
The single-neutron transfer reaction $^{19}$O(d,p$γ$)$^{20}$O has been performed at GANIL, populating states up to and above the neutron separation energy. Bound states populated by s-wave and d-wave transfer have been observed with improved experimental angular distributions. Critically, several unbound states between 7.6 MeV and 9.8 MeV have been accessed for the first time through the 19O(d,p) channel, and isolated via particle-$γ$ spectroscopy.
title Unbound states in $^{19}$O(d,p$γ$)$^{20}$O: tracing the $ν$(d$_{3/2}$) orbital
topic Nuclear Experiment
url https://arxiv.org/abs/2601.03053