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Quasifree (p, 2p) reactions on oxygen isotopes: observation of isospin independence of the reduced single-particle strength

Leyla Atar, Stefanos Paschalis, Carlo Barbieri, Carlos A. Bertulani, Paloma Díaz Fernández, Matthias Holl, Mohammad Ali Najafi, Valerii Panin, Héctor Alvarez-Pol, Thomas Aumann, Vladimir Avdeichikov, Saul Beceiro-Novo, Daniel Bemmerer, Jose Fernando Benlliure Anaya, Juan Manuel Boillos Betete, Konstanze Boretzky, Maria José Garcia Borge, Manuel Caamaño, Christoph Caesar, Enrique Casarejos Ruiz, Wilton N. Catford, Joakim Cederkäll, Marielle Chartier, Leonid V. Chulkov, Dolores Cortina Gil, Edgar Cravo, Raquel Crespo, Iris Dillmann, Zoltán Elekes, Joachim Enders, Olga Ershova, Alfredo Estradé Vaz, Fabio Farinon, Luis Mario Fraile Prieto, Martin Freer, Daniel Galaviz Redondo, Hans Geissel, Roman Gernhäuser, Pavel Golubev, Kathrin Göbel, Julius Hagdahl, Tanja Heftrich, Michael Heil, Marcel Heine, Andreas Heinz, Ana Henriques, Alexander Hufnagel, Alexander Ignatov, Håkan T. Johansson, Björn Jonson, Julian Kahlbow, Nasser Kalantar-Nayestanaki, Rituparna Kanungo, Aleksandra Kelic-Heil, Alexander Knyazev, Thorsten Kröll, Nikolaus Kurz, Marc Labiche, Christoph Langer, Tudi Le Bleis, Roy Crawford Lemmon, Simon Lindberg, Jorge Machado, J. Marganiec-Gałązka, Alina Movsesyan, Enrique Nácher González, Evgenii Y. Nikolskii, Thomas Nilsson, Chiara Nociforo, Angel Perea Martinez, Marina Petri, Stephane Pietri, Ralf Plag, René Reifarth, Guillermo Ribeiro Jimenez, Catherine Rigollet, Dominic M. Rossi, Marko Röder, Deniz Savran, Heiko Scheit, Haik Simon, Olivier Sorlin, Ina Syndikus, Jonathan Thomas Taylor, Olof Tengblad, Ronja Thies, Yasuhiro Togano, Marine Vandebrouck, Paulo Velho, Vasily Volkov, Andreas Wagner, Felix Wamers, Helmut Weick, Carl Wheldon, Gemma Louise Wilson, John S. Winfield, Philip John Woods, Dmitry Yakorev, Mikhail V. Zhukov, Andreas Zilges, Kai Zuber

  • Quasifree one-proton knockout reactions have been employed in inverse kinematics for a systematic study of the structure of stable and exotic oxygen isotopes at the R3B/LAND setup with incident beam energies in the range of 300–450  MeV/u. The oxygen isotopic chain offers a large variation of separation energies that allows for a quantitative understanding of single-particle strength with changing isospin asymmetry. Quasifree knockout reactions provide a complementary approach to intermediate-energy one-nucleon removal reactions. Inclusive cross sections for quasifree knockout reactions of the type AO(p,2p)A−1N have been determined and compared to calculations based on the eikonal reaction theory. The reduction factors for the single-particle strength with respect to the independent-particle model were obtained and compared to state-of-the-art ab initio predictions. The results do not show any significant dependence on proton-neutron asymmetry.

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Author:Leyla AtarORCiDGND, Stefanos PaschalisORCiDGND, Carlo Barbieri, Carlos A. BertulaniORCiDGND, Paloma Díaz FernándezORCiD, Matthias HollGND, Mohammad Ali Najafi, Valerii PaninORCiDGND, Héctor Alvarez-PolORCiD, Thomas AumannORCiDGND, Vladimir Avdeichikov, Saul Beceiro-NovoORCiD, Daniel BemmererORCiDGND, Jose Fernando Benlliure AnayaORCiD, Juan Manuel Boillos Betete, Konstanze BoretzkyORCiD, Maria José Garcia BorgeORCiD, Manuel CaamañoORCiD, Christoph CaesarORCiDGND, Enrique Casarejos RuizORCiD, Wilton N. CatfordORCiD, Joakim CederkällORCiD, Marielle ChartierORCiD, Leonid V. ChulkovORCiD, Dolores Cortina GilORCiD, Edgar CravoORCiD, Raquel CrespoORCiD, Iris DillmannORCiD, Zoltán ElekesORCiD, Joachim EndersORCiDGND, Olga ErshovaGND, Alfredo Estradé VazORCiD, Fabio FarinonGND, Luis Mario Fraile PrietoORCiD, Martin FreerORCiD, Daniel Galaviz RedondoORCiDGND, Hans GeisselORCiD, Roman GernhäuserORCiDGND, Pavel Golubev, Kathrin GöbelORCiDGND, Julius Hagdahl, Tanja HeftrichORCiDGND, Michael Heil, Marcel HeineORCiDGND, Andreas HeinzORCiDGND, Ana Henriques, Alexander Hufnagel, Alexander Ignatov, Håkan T. JohanssonORCiD, Björn JonsonORCiDGND, Julian KahlbowGND, Nasser Kalantar-NayestanakiORCiD, Rituparna Kanungo, Aleksandra Kelic-Heil, Alexander Knyazev, Thorsten KröllGND, Nikolaus KurzORCiD, Marc LabicheORCiD, Christoph LangerGND, Tudi Le Bleis, Roy Crawford LemmonORCiD, Simon LindbergORCiD, Jorge MachadoORCiD, J. Marganiec-Gałązka, Alina MovsesyanGND, Enrique Nácher GonzálezORCiD, Evgenii Y. NikolskiiORCiD, Thomas NilssonORCiD, Chiara Nociforo, Angel Perea MartinezORCiD, Marina PetriORCiDGND, Stephane PietriORCiD, Ralf PlagGND, René ReifarthORCiDGND, Guillermo Ribeiro Jimenez, Catherine RigolletORCiD, Dominic M. RossiORCiDGND, Marko RöderGND, Deniz SavranORCiDGND, Heiko ScheitORCiDGND, Haik SimonGND, Olivier SorlinORCiD, Ina SyndikusGND, Jonathan Thomas Taylor, Olof TengbladORCiD, Ronja ThiesORCiD, Yasuhiro Togano, Marine Vandebrouck, Paulo Velho, Vasily Volkov, Andreas WagnerORCiDGND, Felix WamersGND, Helmut Weick, Carl WheldonORCiD, Gemma Louise WilsonORCiD, John S. Winfield, Philip John Woods, Dmitry Yakorev, Mikhail V. ZhukovORCiDGND, Andreas ZilgesORCiDGND, Kai ZuberORCiDGND
URN:urn:nbn:de:hebis:30:3-628768
DOI:https://doi.org/10.1103/PhysRevLett.120.052501
ISSN:1079-7114
Parent Title (English):Physical review letters
Publisher:APS
Place of publication:College Park, Md.
Document Type:Article
Language:English
Date of Publication (online):2018/01/29
Date of first Publication:2018/01/29
Publishing Institution:Universitätsbibliothek Johann Christian Senckenberg
Creating Corporation:R3B Collaboration
Release Date:2022/11/11
Tag:Direct reactions; Nuclear reactions; Nuclear structure & decays; Nucleon induced nuclear reactions; Shell model; Spectroscopic factors & electromagnetic moments
Volume:120
Issue:5, art. 052501
Article Number:052501
Page Number:7
First Page:1
Last Page:7
Note:
This work was supported by the German Federal Ministry for Education and Research (BMBF project 05P15RDFN1), and through the GSI-TU Darmstadt co- operation agreement. The work of C. B., W. C., and G. W. was supported by the United Kingdom Science and Technology Facilities Council (STFC) under Grants No. ST/L005743/1 and No. ST/P005314/1. SCGF calcu- lations were performed at the DiRAC Complexity system of the University of Leicester (BIS National E-1023 infrastructure capital Grant No. ST/K000373/1 and STFC 1024 Grant No. ST/K0003259/1). C. A. B. acknowl- edges support by the U.S. DOE Grant No. DE-FG02- 08ER41533 and the U.S. NSF Grant No. 1415656. L. M. F. acknowledges funding from MINECO FPA2015-65035-P project.
Note:
Correspondance: R3B Collaboration, L.Atar@gsi.de,  t.aumann@gsi.de.
HeBIS-PPN:505636670
Institutes:Physik
Forschungscluster / ELEMENTS
Dewey Decimal Classification:5 Naturwissenschaften und Mathematik / 53 Physik / 530 Physik
Sammlungen:Universitätspublikationen
Licence (German):License LogoCreative Commons - CC BY - Namensnennung 4.0 International