P. R. John
Technische Universität Darmstadt
2 Papers
P. R. John is an academic researcher from Technische Universität Darmstadt. The author has contributed to research in topics: AGATA & Neutron. The author has an hindex of 2, co-authored 2 publications.
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Papers
Physics opportunities with the Advanced Gamma Tracking Array: AGATA
W. Korten,A. Atac,A. Atac,D. Beaumel,P. Bednarczyk,M. A. Bentley,G. Benzoni,A. J. Boston,A. Bracco,Joakim Cederkäll,Bo Cederwall,M. Ciemala,Eric Clément,F. C. L. Crespi,D. Curien,G. de Angelis,F. Didierjean,D. T. Doherty,Zs. Dombrádi,G. Duchêne,J. Dudek,B. Fernández-Domínguez,B. Fornal,A. Gadea,Liam Gaffney,J. Gerl,K. A. Gladnishki,A. Goasduff,M. Górska,Paul Greenlees,Herbert Hess,D. G. Jenkins,P. R. John,A. Jungclaus,M. Kmiecik,A. Korichi,M. Labiche,S. Leoni,J. Ljungvall,A. Lopez-Martens,A. Maj,D. Mengoni,B. Million,A. Nannini,D. R. Napoli,P. J. Nolan,Johan Nyberg,A. Obertelli,Janne Pakarinen,Janne Pakarinen,Norbert Pietralla,Zs. Podolyák,Begoña Quintana,Riccardo Raabe,G. Rainovski,F. Recchia,P. Reiter,Dirk Rudolph,J. Simpson,Ch. Theisen,D. Tonev,A. Tumino,J. J. Valiente-Dobón,O. Wieland,K. Wimmer,M. Zielińska +65 more
TL;DR: The Advanced Gamma Tracking Array (AGATA) as discussed by the authors is a high-resolution γ-ray spectrometer, solely built from highly segmented high-purity Ge detectors, capable of measuring γ rays from a few tens of keV to beyond 10 MeV.
High-spin structure in the transitional nucleus 131Xe: Competitive neutron and proton alignment in the vicinity of the N=82 shell closure
L. Kaya,A. Vogt,P. Reiter,M. Siciliano,B. Birkenbach,A. Blazhev,L. Coraggio,E. Teruya,Naotaka Yoshinaga,Koji Higashiyama,K. Arnswald,D. Bazzacco,A. Bracco,A. Bracco,B. Bruyneel,L. Corradi,F. C. L. Crespi,F. C. L. Crespi,G. de Angelis,J. Eberth,E. Farnea,E. Fioretto,C. Fransen,B. Fu,A. Gadea,A. Gargano,Agnese Giaz,Agnese Giaz,Andreas Görgen,Andreas Görgen,A. Gottardo,K. Hadynska-Klek,Herbert Hess,R. Hetzenegger,R. Hirsch,Nunzio Itaco,Nunzio Itaco,P. R. John,J. Jolie,A. Jungclaus,W. Korten,S. Leoni,S. Leoni,L. Lewandowski,S. Lunardi,S. Lunardi,Roberto Menegazzo,D. Mengoni,D. Mengoni,C. Michelagnoli,Tea Mijatović,G. Montagnoli,G. Montagnoli,D. Montanari,D. Montanari,C. Müller-Gatermann,D. R. Napoli,Zs. Podolyák,G. Pollarolo,G. Pollarolo,Alberto Pullia,Alberto Pullia,M. Queiser,F. Recchia,F. Recchia,D. Rosiak,N. Saed-Samii,E. Sahin,Fernando Scarlassara,Fernando Scarlassara,D. Schneiders,M. Seidlitz,B. Siebeck,J. F. Smith,P. A. Söderström,A. M. Stefanini,T. Steinbach,O. Stezowski,Suzana Szilner,B. Szpak,C. A. Ur,J. J. Valiente-Dobón,K. Wolf,K. O. Zell +83 more
TL;DR: In this paper, the transitional nucleus 131Xe is investigated after multinucleon transfer (MNT) in the 136Xe+208Pb and 136 Xe+238U reactions employing the high-resolution Advanced GAmma Tracking (AGATA) coupled to the magnetic spectrometer PRISMA at the Laboratori Nazionali di Legnaro, Italy and as an elusive reaction product in the fusion-evaporation reaction 124Sn(11B,p3n)