Analysis of 11B+13,14C scattering and 13C(11B, 10B)14C reaction data at E lab(11B)=45 MeV using energy dependent optical model systematics for carbon isotopes

被引:0
作者
Mezhevych, S. Yu [1 ]
Ponkratenko, O. A. [1 ]
Rudchik, A. T. [1 ]
Keeley, N. [2 ]
Kemper, K. W. [3 ]
Rudchik, A. A. [1 ]
Rusek, K. [4 ]
Uleshchenko, V. V. [1 ]
Stepanenko, Yu M. [1 ]
Koshchiy, E., I [5 ]
Shyrma, Yu O. [1 ]
机构
[1] Natl Acad Sci Ukraine, Inst Nucl Res, UA-03028 Kyiv, Ukraine
[2] Natl Ctr Nucl Res, ul Andrzeja Soltana 7, PL-05400 Otwock, Poland
[3] Florida State Univ, Phys Dept, Tallahassee, FL 32306 USA
[4] Univ Poland, PL-02093 Warsaw, Poland
[5] Texas A&M Univ, Cyclotron Inst, College Stn, TX 77843 USA
关键词
direct reactions; transfer reactions; optical model; coupled channels; coupled reaction channels; elastic scattering; ELASTIC DEUTERON SCATTERING; INELASTIC-SCATTERING;
D O I
10.1088/1402-4896/ad7b8d
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Existing data for B-11 + C-13,C-14 elastic and inelastic scattering at E-lab(B-11) = 45 MeV, as well as new data for the C-13(B-11, B-10)C-14 reaction for transitions populating the ground state of C-14 and the ground plus first four excited states of B-10, were analysed using the coupled-channels (CC) and coupled-reaction-channels (CRC) methods. A recently proposed energy dependent optical model (OM) potential for carbon isotopes, consisting of Woods-Saxon (WS) volume real and WS volume plus surface imaginary components, applied successfully to OM analyses of scattering from mid-mass (A > 27) and heavy target nuclei, was used to generate the distorted waves in the entrance and exit channels. The data analysed in this work cover the whole angular range, enabling the most important reaction mechanisms leading to the production of nuclei in the exit reaction channels to be established. For these light boron + carbon systems, a reasonable fit to both scattering and reaction data over the full angular range required some modification of the parameters of the OM potential extracted from the energy-dependent carbon systematics: omission of the surface imaginary part and a slight increase in the radius of the real part. Inclusion of a sufficient number of inelastic channels in a CC analysis of the B-11 + C-13,C-14 elastic scattering was shown to be important at mid-range scattering angles, while for the C-13(B-11, B-10)C-14 reaction inclusion of two-step neutron transfers via low-lying excited states of 11B was required to give good overall agreement between the CRC calculations and the data. We suggest the analytical form of the global carbon OM potential may benefit from an additional parameterization of the radius of the real part and the depth of the surface imaginary part, dependent on the target mass number, to give better applicability to the analysis of scattering from light target nuclei.
引用
收藏
页数:9
相关论文
共 29 条
  • [1] Global deuteron optical model potential for the energy range up to 183 MeV
    An, Haixia
    Cai, Chonghai
    [J]. PHYSICAL REVIEW C, 2006, 73 (05):
  • [2] ELASTIC DEUTERON SCATTERING AND OPTICAL-MODEL PARAMETERS AT ENERGIES UP TO 100-MEV
    BOJOWALD, J
    MACHNER, H
    NANN, H
    OELERT, W
    ROGGE, M
    TUREK, P
    [J]. PHYSICAL REVIEW C, 1988, 38 (03): : 1153 - 1163
  • [3] GLOBAL OPTICAL-MODEL POTENTIALS FOR THE ELASTIC-SCATTERING OF LI-6,LI-7 PROJECTILES
    COOK, J
    [J]. NUCLEAR PHYSICS A, 1982, 388 (01) : 153 - 172
  • [4] GLOBAL OPTICAL-MODEL POTENTIAL FOR ELASTIC DEUTERON SCATTERING FROM 12 MEV TO 90 MEV
    DAEHNICK, WW
    CHILDS, JD
    VRCELJ, Z
    [J]. PHYSICAL REVIEW C, 1980, 21 (06): : 2253 - 2274
  • [5] Deuteron global optical model potential for energies up to 200 MeV
    Han, Yinlu
    Shi, Yuyang
    Shen, Qingbiao
    [J]. PHYSICAL REVIEW C, 2006, 74 (04):
  • [6] B-11 + C-12 AND B-10 + C-13 FUSION CROSS-SECTIONS
    MATEJA, JF
    FRAWLEY, AD
    DENNIS, LC
    ABDO, K
    KEMPER, KW
    [J]. PHYSICAL REVIEW C, 1982, 25 (06): : 2963 - 2973
  • [7] Extracting the asymptotic normalization coefficient for the 14C → 13B +p overlap from the 14C(11B, 12C)13B reaction
    Mezhevych, S. Yu
    Keeley, N.
    Rudchik, A. T.
    Rusek, K.
    Kemper, K. W.
    Rudchik, A. A.
    Ponkratenko, O. A.
    Koshchy, E., I
    Sakuta, S. B.
    [J]. PHYSICAL REVIEW C, 2022, 105 (02)
  • [8] 14C(11B,10B)15C REACTION at Elab=45 MeV AND THE 10B+15C OPTICAL POTENTIAL
    Mezhevych, S. Yu
    Rudchik, A. T.
    Rudchik, A. A.
    Kemper, K. W.
    Rusek, K.
    Ponkratenko, O. A.
    Koshchy, E., I
    Sakuta, S. B.
    [J]. ACTA PHYSICA POLONICA B, 2021, 52 (02): : 109 - 124
  • [9] 13C(11B, 12C)12B REACTION AT 45 MeV, 12C+12 B INTERACTION VERSUS THAT OF 12C+10,11B
    Mezhevych, S. Yu
    Rudchik, A. T.
    Rudchik, A. A.
    Kemper, K. W.
    Rusek, K.
    Ponkratenko, O. A.
    Koshchy, E., I
    Sakuta, S. B.
    [J]. ACTA PHYSICA POLONICA B, 2020, 51 (10): : 1949 - 1963
  • [10] Cluster structure of 17O
    Mezhevych, S. Yu.
    Rudchik, A. T.
    Rudchik, A. A.
    Ponkratenko, O. A.
    Keeley, N.
    Kemper, K. W.
    Mazzocco, M.
    Rusek, K.
    Sakuta, S. B.
    [J]. PHYSICAL REVIEW C, 2017, 95 (03)