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Direct processes for the systems 7Be, 8B + 208Pb at Coulomb barrier energies

Mazzocco, Marco M.; Keeley, N.; Boiano, Alfonso; Commara, M. La; Lagni, A.; Manea, Christian; Parascandolo, Concetta; Pierroutsakou, Dimitra; Fernández García, Juan Pablo; Iwasa, Naohito

Abstract

The elastic scattering process for the nuclear reactions induced by the Radioactive Ion Beams 7Be and 8B on a 208Pb target was measured for the first time in the energy range around the Coulomb barrier. Extensive theoretical calculations within the framework of the optical model were performed. An excellent agreement between experimental data and theoretical predictions was achieved for the reaction 7Be + 208Pb, while a comprehensive understanding of the reaction dynamics induced by the more exotic projectile 8B is still far to be reached. Predictions of the cross section for the breakup for both systems will also be given.

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Con en om his wo k may be used unde he e ms o heC ea i eCommonsA ibu ion 3.0 licence. Any u he dis ibu ion o his wo k mus main ain a ibu ion o he au ho (s) and he i le o he wo k, jou nal ci a ion and DOI. Published unde licence by IOP Publishing L d 27 h In e na ional Nuclea Physics Con e ence (INPC2019) Jou nal o Physics: Con e ence Se ies 1643 (2020) 012096 IOP Publishing doi:10.1088/1742-6596/1643/1/012096 1 Di ec p ocesses o he sys ems 7Be,8B + 208Pb a Coulomb ba ie ene gies M Mazzocco1,2, N Keeley3, A Boiano4, C Boiano5, M La Comma a6,4, A Lagni1, C Manea2, C Pa ascandolo4, D Pie ou sakou4, C Signo ini1,2, E S ano1,2, D To esi1,2, H Yamaguchi7, D Kahl7, L Acos a8,9, P Di Meo4, J P Fe nandez-Ga cia9, T Gloda iu10, J G ebosz11, A Guglielme i12,5, Y Hi ayama13, N Imai7,13, H Ishiyama13, N Iwasa14, S C Jeong13,15, H M Jia16, Y H Kim13, S Kimu a14, S Kubono7,17, G La Rana18,4, C J Lin16, P Lo i2, G Ma qu´ınez-Du ´an8, I Ma el8,19, H Miya ake13, M Mukai13, T Nakao7, M Nicole o2, A Pakou20, K Rusek21, Y Sakaguchi7, A M S´anchez-Ben´ı ez22,23, T Sa a10, O Sgou os20, V Souke as20, F So amel1,2, E S ilia is24, L S oe10, T Te anishi25, N Toniolo26, Y Wakabayashi17, Y X Wa anabe13, L Yang16,7, Y Y Yang27 and H Q Zhang16 1Dipa imen o di Fisica e As onomia, Uni e si `a di Pado a, ia F. Ma zolo 8, I-35131 Pado a, I aly 2INFN-Sezione di Pado a, ia F. Ma zolo 8, I-35131 Pado a, I aly 3Na ional Cen e o Nuclea Resea ch, ul. And zeja So l ana 7, 05-400 O wock, Poland 4INFN-Sezione di Napoli, ia Cin ia, I-80126, Napoli, I aly 5INFN-Sezione di Milano, ia Celo ia 16, I-20133, Milano, I aly 6Dipa imen o di Fa macia, Uni e si `a di Napoli “Fede ico II”, ia D. Mon esano, I-80131, Napoli, I aly 7Cen e o Nuclea S udy (CNS) - The Uni e si y o Tokyo, Wako B anch, 2-1 Hi osawa, Wako, Sai ama 351-0198, Japan 8Depa amen o de F´ısica Aplicada, Uni e sidad de Huel a, Campus de El Ca men, E-21071 Huel a, Spain 9INFN-Sezione di Ca ania, ia San a Sofia 64, I-95123, Ca ania, I aly 10 NIPNE, 30 Reac o ului S ee , 077125 Magu ele, Romania 11 Ins i u e o Nuclea Physics Polish Academy o Science, ul. Radzikowskiego 152, 31-342 K ak´ow, Poland 12 Uni e si `a degli S udi di Milano, Dipa imen o di Fisica, Via Celo ia 16, I-20133 Milano, I aly 13 KEK, Oho 1-1, Tsukuba, Iba aki 305-0801, Japan 14 Depa men o Physics, Tohoku Uni e si y, Sendai, Miyagi 980-8578, Japan 15 Ins i u e o Basic Science (IBS), 55, Expo- o, Yuseong-gu, 34126 Daejeon, Ko ea 16 China Ins i u e o A omic Ene gy, P. O. Box 275 , Beijing 102413, China 17 RIKEN, 2-1 Hi osawa, Wako, Sai ama 351-0198, Japan 18 Dipa imen o di Fisica, Uni e si `a di Napoli “Fede ico II”, ia Cin ia, I-80126, Napoli, I aly 19 Depa men o Physics, Uni e si y o Li e pool, Li e pool L69 7ZE, Uni ed Kingdom 20 Depa men o Physics and HINP, Uni e si y o Ioannina, 45110 Ioannina, G eece 21 Hea y Ion Labo a o y, Uni e si y o Wa saw, ul. Pas eu a 5a, 02-093 Wa saw, Poland 22 Nuclea Physics Cen e , Uni e si y o Lisbon, P-1649-003 Lisbon, Po ugal 23 Cen o de Es udios A anzados en F´ısica, Ma em´a icas y Compu aci´on (CEAFMC), Depa men o In eg a ed Sciences, Uni e si y o Huel a, E-21071 Huel a, Spain 27 h In e na ional Nuclea Physics Con e ence (INPC2019) Jou nal o Physics: Con e ence Se ies 1643 (2020) 012096 IOP Publishing doi:10.1088/1742-6596/1643/1/012096 2 24 Ins i u e o Accele a ing Sys ems and Applica ions and Depa men o Physics, Uni e si y o A hens, A hens, G eece 25 Depa men o Physics, Kyushu Uni e si y, Mo ooka 744, Fukuoka 819-0395, Japan 26 INFN-LNL, iale dell’Uni e si `a 2, I-35020, Legna o (PD), I aly 27 Ins i u e o Mode n Physics, Chinese Academy o Sciences, 509 Nanchang Rd., Lanzhou 730000, China E-mail: [email p o ec ed] Abs ac . The elas ic sca e ing p ocess o he nuclea eac ions induced by he Radioac i e Ion Beams 7Be and 8B on a 208Pb a ge was measu ed o he fi s ime in he ene gy ange a ound he Coulomb ba ie . Ex ensi e heo e ical calcula ions wi hin he amewo k o he op ical model we e pe o med. An excellen ag eemen be ween expe imen al da a and heo e ical p edic ions was achie ed o he eac ion 7Be + 208Pb, while a comp ehensi e unde s anding o he eac ion dynamics induced by he mo e exo ic p ojec ile 8B is s ill a o be eached. P edic ions o he c oss sec ion o he b eakup o bo h sys ems will also be gi en. 1. In oduc ion The eac ion dynamics induced by ligh weakly-bound nuclei in he ene gy ange a ound he Coulomb ba ie is a qui e in e es ing esea ch opic in p esen -day nuclea physics. These s udies was o iginally mo i a ed by he expec a ion ha he peculia p ope ies o many ligh exo ic nuclei, such as halo s uc u e, neu on skin s uc u e o e y weak binding ene gy, could magni y he s ong enhancemen o nea -ba ie usion c oss sec ion obse ed in collisions be ween s able nuclei. Despi e ea lie measu emen s, i was soon ealized ha he unusual ea u es o exo ic nuclei end o inc ease he o al eac ion p obabili y a he han he usion c oss sec ion. The in es iga ion hen mo ed o y o shed some ligh on which eac ion channels we e mainly esponsible o he enhancemen o he o al eac ion p obabili y, whe he his e ec was mainly ela ed o ans e channels o o he b eakup p ocess. Se e al e iew a icles ha e been w i en o e he pas 15 yea s on his opic [1, 2, 3, 4, 5, 6, 7, 8, 9]. These s udies a e usually e y complica ed and ypically su e o low s a is ical accu acy. In ac , hese exo ic p ojec iles a e gene ally adioac i e and sho -li ed, he e o e we need i s a nuclea eac ion be ween s able nuclei o occu , in o de o p oduce he adioiso opes, and hen a sui able de ice o selec and pu i y he seconda y beam. As a consequence, Radioac i e Ion Beams nowadays a ailable s ill ha e a he low in ensi ies. Thus, he i s se ies o expe imen s pe o med wi h exo ic beams in he ene gy ange a ound he Coulomb ba ie a e ypically add essed o he in es iga ion o he mos p obable eac ion mechanism, i.e. he elas ic sca e ing p ocess. The analysis o he elas ic sca e ing angula dis ibu ion wi hin he amewo k o he op ical model can p o ide a i s indica ion abou he o e all eac i i y o an exo ic p ojec ile and (possible) modi ica ion on he shape he expe imen al da a wi h espec o he heo e ical p edic ions o he sca e ing p ocess can gi e some hin s on he magni ude o c oss sec ions o o he nuclea p ocesses and hei in luence on he sca e ing channel. 2. Expe imen s 2.1. P oduc ion o he seconda y beams Bo h Radioac i e Ion Beams used in hese s udies we e p oduced by means o he in- ligh echnique. The 8B expe imen was pe o med wi h he CRIB acili y [10, 11], loca ed inside he RIKEN campus in Japan. We s a ed wi h a 11.2 MeV/u 6Li3+ p ima y beam wi h an a e age in ensi y o abou 1 pµA impinging on a 8-cm long gas a ge , illed wi h 3He gas a a p essu e o abou 1 ba and kep a c yogenic empe a u e. The 8B was hen selec ed and pu i ied by means o 27 h In e na ional Nuclea Physics Con e ence (INPC2019) Jou nal o Physics: Con e ence Se ies 1643 (2020) 012096 IOP Publishing doi:10.1088/1742-6596/1643/1/012096 3 he ion-op ical elemen s o CRIB and impinged on a 2.2 mg/cm2 208Pb a ge wi h an ene gy o 50 ±1 MeV, an a e age in ensi y o 104pps and a pu i y a ound 20%. The 7Be expe imen was ca ied ou a he Labo a o i Nazionali di Legna o (LNL, I aly), whe e he adioac i e ion beam was p oduced wi h he acili y EXOTIC [12]. In his case, we used a 7Li3+ beam wi h an ene gy o 48.8 MeV and an in ensi y o 50-60 pnA. The p ima y beam was hi ing a 5-cm long gas a ge , illed wi h H2a a p essu e o abou 1 ba . The ou going 7Be seconda y beam was selec ed wi h he acili y EXOTIC and deli e ed wi h a in ensi y o 2-3 ×105pps and a nea ly 100-% pu i y on a 1 mg/cm2 208Pb a ge . Th ee di e en seconda y beam ene gies we e ob ained by ope a ing he a ge a oom and c yogenic empe a u es and by inse ing a 12.5-µm hick aluminum deg ade a a sui able posi ion along he beam line. The 7Be ene gies on a ge we e: 42.2±0.4 MeV, 40.5±0.4 MeV and 37.4±0.5 MeV. 2.2. De ec o se -up In bo h expe imen s, six modules o he de ec o a ay EXPADES [13] we e employed o he de ec ion o cha ged pa icles. Each module was composed by wo Double-Sided-Silicon-S ip- De ec o s (DSSSDs), he inne one wi h a hickness o 43-57 µm, while he ou e one had a hickness o 300 µm. Each DSSSD had an a ea o 64.0 mm ×64.0 mm and he on and back sides we e segmen ed in o 32 e ical and ho izon al s ips, espec i ely. De ails on he elec onic chains used o bo h de ec o s ages can be ound in [13]. The six modules o EXPADES we e a anged in a cylind ical con igu a ion a ound he a ge posi ion ensu ing a solid angle co e age o abou 14 % o 4πs . A symme ical displacemen , co e ing he angula ange θlab = [52◦, 167◦], a ound he beam axis was chosen o he 7Be expe imen . On he o he hand, o he 8B expe imen a sligh asymme ical a angemen o he EXPADES modules was p e e ed in o de o enla ge he pola angle co e age θlab = [8◦, 166◦]. Mo e de ails on he de ec o geome y a e gi en in he ecen publica ion [14]. 3. Resul s 3.1. Elas ic sca e ing and o al eac ion c oss sec ion The i s s ep o he da a analysis was he e alua ion o he elas ic sca e ing angula dis ibu ions o bo h sys ems and he ex ac ion, ia an op ical model i o he expe imen al da a, o he o al eac ion c oss sec ions. All he s eps o he da a e alua ion and o he i ing p ocedu e a e desc ibed in [14] and he e we discuss he esul s and he compa ison wi h simila mass sys ems. When compa ing di e en sys ems, bo h bomba ding ene gies and c oss sec ions need o he no malize in o de o accoun o he di e en Coulomb ba ie and he di e en geome ical size o he colliding nuclei. In doing ha , we used he o malism sugges ed by L.F. Can o and collabo a o s [15]. This me hod was o iginally de eloped and wo ks p e y nicely o he compa ison o usion c oss sec ion da a, bu can also be employed, paying some a en ion [16], also o eac ion c oss sec ion da a. In ou case, we a e going o compa e eac ions induced by p ojec iles wi h simila masses (in he ange A = 6-8) and all in e ac ing wi h he same a ge nucleus (208Pb). I has been discussed o a long ime whe he , om he poin o iew o he eac ion dynamics, he 7Be beha io would ha e esembled mo e ha o 6Li, which has a sepa a ion ene gy e y simila (wi hin 100 keV) o ha o 7Be, o ha o i s mi o nucleus 7Li, wi h an analogue nuclea s uc u e bu a sepa a ion ene gy 60% la ge . Ou s udy p o ides a i s answe o his ques ion, a leas o he in e ac ion wi h a e y massi e a ge such as 208Pb, since he h ee da a poin s we measu ed o he sys em 7Be + 208Pb ollow essen ially he end o he eac ion 6Li + 208Pb [17]. This esul sugges s ha nuclea binding ene gy plays a majo ole han nuclea s uc u e in collisions in ol ing weakly-bound nuclei, a leas in he ene gy ange a ound he Coulomb ba ie . 27 h In e na ional Nuclea Physics Con e ence (INPC2019) Jou nal o Physics: Con e ence Se ies 1643 (2020) 012096 IOP Publishing doi:10.1088/1742-6596/1643/1/012096 4 I we now add o he compa ison also he mi o nuclei o mass A = 8, i.e. 8Li [18] and 8B, again in e ac ing wi h a 208Pb a ge , we obse ed in [14] ha , in bo h cases, he ”‘no malized”’ o al eac ion c oss sec ion da a a e enhanced wi h espec o egion o he g aph whe e p ojec iles wi h mass A = 6-7 a e loca ed. A simple a gumen ela ed only o he p ojec ile binding ene gy would no s and in his occasion, since he 8Li sepa a ion ene gy is exac ly in be ween hose o 6Li/7Be and 7Li. The ac ual eason o he 8Li enhancemen has he e o e o be sea ched elsewhe e and, mos likely, elies on he la ge p obabili y, i.e. c oss sec ion, o he n-s ipping p ocess (leading o 7Li in he eac ion exi channel) o occu . Speci ic expe imen al measu emen s o his p ocess a e he e o e needed in o de o con i m his scena io. E en mo e s iking is he compa ison o 8B wi h all o he ligh p ojec iles. In ac , i s eac ion c oss sec ion is enhanced by a ac o 3-4 wi h espec o ha measu ed o he eac ion induced by i s co e 7Be. Following he analogies wi h he sys em 8+58Ni [19], he enhancemen should be due o he ex emely weak binding ene gy o 8B (Sp= 137.5 keV) and consequen ly he e y high p obabili y o his nucleus o b eak up while app oaching a a ge nucleus. To his ex end, we pe o med ex ensi e Coupled-Channel calcula ions in o de o p o ide an es ima e o he c oss sec ion o he b eakup p ocess 8B→7Be + p. 3.2. B eakup p ocess Theo e ical calcula ions we e pe o med o bo h sys ems. Being bo h p ojec ile e y weakly- bound, we desc ibed he b eakup p ojec ile by means o a disc e iza ion o he (con inuous) ene gy spec um abo e he b eakup h eshold in bins equally spaced in he momen um space. Also in his case, he p ocedu e adop ed o he calcula ions is ully desc ibed in [14] and he e we summa ize he main de ails impo an o he subsequen discussion. The 7Be nucleus was modelled using an 3He + 4He clus e olding model. In he calcula ions, we included also he possibili y o exci e he 7Be i s exci ed s a e a 0.429 MeV (Jπ= 1/2−), he wo l= 3¯h esonances a 4.57 (7/2−) and 6.73 (5/2−) MeV, he non esonan con inuum up o mul ipola i y λ= 4 and up o an exci a ion ene gy o 9.88 MeV abo e he b eakup h eshold. The calcula ions we e pe o med by using he coupled channel code F esco [20]. Fi s o all, we ema k ha we we e able o ep oduce he expe imen al elas ic sca e ing angula dis ibu ion wi hou any ee pa ame e , p o iding an addi ional con i ma ion o he alidi y o he adop ed app oach. The calcula ions p edic a b eakup c oss sec ion o 20-38 mb in he ange o ene gies co e ed by ou expe imen . These alues co espond app oxima ely o abou 10% o he o e all eac ion c oss sec ion o he sys em 7Be + 208Pb, s ongly indica ing ha he b eakup p ocess does no domina e he eac ion dynamics o his sys em, in a quali a i e ag eemen wi h ou p e ious obse a ion o he eac ion 7Be + 58Ni [?]. We also had an addi ional con i ma ion o his ou come om he p elimina y analysis o he p oduc ion c oss sec ion o he eac ion p oduc s 3He and 4He. The hea ie iso opes is indeed 4-5 imes mo e abundan han he ligh e coun e pa , sugges ing ha he e a e many o he eac ion channels (such as, o ins ance, n- pickup o p-s ipping) open in his ene gy ange and leading o ex a-p oduc ion o 4He wi h espec o 3He. Mo ing now o 8B, we used a 7Be + pclus e olding model o desc ibe his e y exo ic p ojec ile. To educe he compu a ion ime, 7Be was assumed o be spinless and ine and he p o on o be in a pu e p3/2s a e. The non esonan con inuum up o a mul ipola i y λ= 5 and up o an exci a ion ene gy o 11.7 MeV abo e he b eakup h eshold was included. Due o assumed spinless na u e o 7Be, no 8B esonances we e conside ed in he heo e ical calcula ions. The p edic ed di e en ial c oss sec ion o he elas ic sca e ing p ocess ailed o ep oduce sa is ac o y he expe imen al da a, al eady indica ing ha ou model o desc ibe 8B migh be oo simplis ic. Being he 8co e, i.e. 7Be, also a weakly bound nucleus, pe haps a 4-body app oach, including also he possibili y o co e exci a ion, should be mo e adequa e o his eac ion. 27 h In e na ional Nuclea Physics Con e ence (INPC2019) Jou nal o Physics: Con e ence Se ies 1643 (2020) 012096 IOP Publishing doi:10.1088/1742-6596/1643/1/012096 5 Ne e heless, coupled channel calcula ions p edic an ex emely la ge b eakup c oss sec ion o a ound 600 mb, which co esponds o mo e han 50% o he o al eac ion c oss sec ion. We a e p esen ly wo king o ex ac he angula dis ibu ion o he 7Be eac ion p oduc . A p elimina y e alua ion shows a di e en ial c oss sec ion s ongly peaked a o wa d angles, wi h a la ge ail ex ending up o e y backwa d angles, in quali a i e ag eemen wi h he ea lie obse a ions by V. Guima ˜aes and collabo a o s o he eac ion 8B + 58Ni [22, 23]. 4. Ou look The elas ic sca e ing p ocess o he sys ems 7Be, 8B + 208Pb has been measu ed o he i s ime in he ene gy ange a ound he Coulomb ba ie . The expe imen al da a ha e been analyzed wi hin he amewo k o he op ical model in o de o ex ac he o al eac ion c oss sec ion. The 8B + 208Pb eac i i y esul ed o exceed by a hose epo ed o p ojec iles o masses in he ange A = 6-8 and in e ac ing wi h he same a ge nucleus. Theo e ical calcula ions indica e ha his enhancemen migh be due o he b eakup p ocess 8→7Be + pand we a e p esen ly wo king o ex ac he expe imen al di e en ial c oss sec ion o he 7Be eac ion p oduc . Acknowledgmen s The 8B expe imen was pe o med a RI Beam Fac o y ope a ed by RIKEN Nishina Cen e and CNS, Uni e si y o Tokyo. This wo k was suppo ed by he Polish Na ional Science Cen e unde Con ac No. 2014/14/M/ST2/00738 (COPIN-INFN Collabo a ion), by JSPS KAKENHI (Nos. 16K05369, and 19K03883) om he Minis y o Educa ion, Cul u e, Spo s, Science and Technology (MEXT) o Japan and by he p ojec s: CONACyT LN-294537 and DGAPA-PAPIIT IA103218. Re e ences [1] Can o L F, Gomes P R S, Donangelo R and Hussein M S 2006 Phys. Rep. 424 1 [2] Liang J F and Signo ini C 2005 In . J. Mod. Phys. E14 1121 [3] Keeley N, Raabe R, Alamanos N and Sida J L 2007 P og. Pa . Nucl. Phys. 59 579 [4] Keeley N, Alamanos N, Kempe K W and Rusek K 2009 P og. Pa . Nucl. Phys. 63 396 [5] Mazzocco M 2010 In . J. Mod. Phys. E19 977 [6] Back B B, Esbensen H, Jiang C L and Rehm K E 2014 Re . Mod. Phys. 86 317 [7] Keeley N, Kempe K W and Rusek K 2014 Eu . Phys. J. A50 145 [8] Can o L F, Gomes P R S, Donangelo R, Lubian J and Hussein M S 2015 Phys. Rep. 596 1 [9] Kola a J J, Guima ˜aes V and Aguile a E F 2016 Eu . Phys. J. A52 123 [10] Yanagisawa Y e al 2005 Nucl. Ins um. Me hods Phys. Res. A539 74 [11] Yamaguchi H e al 2008 Nucl. Ins um. Me hods Phys. Res. A589 150 [12] Fa inon F e al 2008 Nucl. Ins um. Me hods Phys. Res. B266 4097 [13] Pie ou sakou D e al 2016 Nucl. Ins um. Me hods Phys. Res. A834 46 [14] Mazzocco M e al 2019 Phys. Re . C 100 024602 [15] Can o L F, Gomes P R S, Lubian J, Chamon L C and C ema E 2009 J. Phys. G36 015109 [16] Can o L F, Mendes Junio D R, Gomes P R S and Lubian J 2015 Phys. Re . C92 014626 [17] Keeley N, Benne S J, Cla ke N M, Ful on B R, Tunga e G, D umm P V, Naga ajan M A and Lilley J S 1994 Nucl. Phys. A571 326 [18] Kola a J J, Goldbe g V Z, Lamm L O, Ma ino M G, O’Keeffe C J, Rogache G, Aguile a E F, Ga c´ıa-Ma ´ınez H, Ma inez-Qui oz E, Rosales P, Becche i F D e al 2002 Phys. Re . C65 054616 [19] Aguile a E F, Ma inez-Qui oz E, Lizcano D, Gomez-Camacho A, Kola a J J, Lamm L O, Guima ˜aes V, Lich en hale R, Cama go O, Becche i F D e al 2009 Phys. Re . C79 021601(R) [20] Thompson I J 1988 Compu . Phys. Rep. 7167 [21] Mazzocco M, To esi D, Pie ou sakou D, Keeley N, Acos a L, Boiano A, Boiano C, Gloda iu T, Guglielme i A, La Comma a M e al 2015 Phys. Re . C92 024615 [22] Guima ˜aes V, Kola a J J, Pe e son D, San i P, Whi e-S e ens R H, Vincen S M e al 2000 Phys. Re . Le . 84 1862 [23] Kola a J J, Guima ˜aes V, Pe e son D, San i P, Whi e-S e ens R H, Vincen S M e al 2001 Phys. Re . C63 024616