Neutron multiplicity measurement and investigation of nuclear dissipation and shell effects in 30Si+182,184,186W reactions

被引:10
作者
Shareef, M. [1 ,8 ]
Prasad, E. [2 ]
Jhingan, A. [3 ]
Saneesh, N. [3 ,5 ]
Pal, Santanu [4 ,9 ]
Vinodkumar, A. M. [5 ]
Golda, K. S. [3 ]
Kumar, Mohit [3 ]
Shamlath, A. [2 ,10 ]
Laveen, P. V. [2 ,11 ]
Visakh, A. C. [2 ]
Hosamani, M. M. [6 ]
Duggi, S. K. [7 ]
Devi, P. Sandya [7 ]
Jyothi, G. N. [7 ]
Tejaswi, A. [7 ]
Chatterjee, A. [3 ]
Sugathan, P. [3 ]
机构
[1] Saha Inst Nucl Phys, 1-AF, Bidhan Nagar, Kolkata 700064, India
[2] Cent Univ Kerala, Sch Phys Sci, Dept Phys, Kasaragod 671316, India
[3] Interuniv Accelerator Ctr, Aruna Asaf Ali Marg, New Delhi 110067, India
[4] CS-6-1 Golf Green, Kolkata 700095, India
[5] Univ Calicut, Dept Phys, Calicut 673635, India
[6] Karnatak Univ, Dept Phys, Dharwad 580003, India
[7] Andhra Univ, Dept Nucl Phys, Visakhapatnam 530003, India
[8] Cent Univ Kerala, Sch Phys Sci, Dept Phys, Kasaragod 671316, India
[9] VECC, Phys Grp, Kolkata 700064, India
[10] Mahatma Gandhi Univ, Inst Integrated Programmes & Res Basic Sci IIRBS, Kottayam 686560, India
[11] Kannur Univ Swami, Dept Phys, Anandatheertha Campus, Payyanur 670327, Kerala, India
关键词
COLLECTIVE ENHANCEMENT; FISSION DYNAMICS; EMISSION; FUSION; COLLISIONS; MASSES; DECAY; MODEL;
D O I
10.1103/PhysRevC.107.054619
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
Background: Enhanced prescission neutron multiplicity (vpre) over statistical model calculations assuming Bohr-Wheeler fission width is explained using Kramers' fission width incorporating dissipative effects. The dissipation strength obtained from such studies reported significant effect of the neutron shell closure of N = 126 of the fissioning system as well as nuclear temperature. The dependence of dissipation strength on shell effect and temperature is also attributed to the choice of input parameters in the statistical model calculations.Purpose: We investigate the role of N/Z, shell effect, collective enhancement of level density (CELD), and excitation energy on vpre in reactions forming isotopes of the Ra nucleus.Methods: The neutron multiplicity excitation function is measured for the 30Si + 182,184,186W reactions populat-ing 212,214,216Ra nuclei using the National Array of Neutron Detectors (NAND) at the Inter-University Accelerator Centre, New Delhi. Among these compound nuclei, 214Ra has a major neutron shell closure of N = 126. Measured vpre are analyzed within the framework of a statistical model incorporating dynamical hindrance in nuclear fission due to dissipation, shell corrections in the fission barrier and level density, and CELD.Results: Experimental vpre show a marginal isotopic dependence at all excitation energies. vpre values do not show any noticeable effect of neutron magic number N = 126. Dissipation strength of & beta; = 8 zs-1 (5.27 MeV/h over bar ) reasonably reproduces the experimental vpre excitation functions for all three nuclei in the measured energy range. Appreciable variations in presaddle neutron emissions are observed when shell effect or CELD is excluded in the calculations. Even though both the shell and CELD are found to impact primarily in the presaddle sector, they alter the excitation energy and multiplicity in the saddle-to-scission sector as well in a complementary manner.Conclusions: A temperature independent dissipation coefficient is observed to reproduce the experimental results in this study throughout the excitation energy range measured. Shell corrections in fission barrier and level density parameters and CELD in fission and particle evaporation widths also influence the neutron multiplicities. The observed effect of CELD in the presaddle phase is attributed to the large enhancement of level density at the saddle due to its large deformation and consequent enhancement of fission width.
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页数:12
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共 68 条
[61]   Analysis of the total kinetic energy of fission fragments with the Langevin equation [J].
Usang, M. D. ;
Ivanyuk, F. A. ;
Ishizuka, C. ;
Chiba, S. .
PHYSICAL REVIEW C, 2017, 96 (06)
[62]   Effects of microscopic transport coefficients on fission observables calculated by the Langevin equation [J].
Usang, M. D. ;
Ivanyuk, F. A. ;
Ishizuka, C. ;
Chiba, S. .
PHYSICAL REVIEW C, 2016, 94 (04)
[63]  
Vandenbosch R., 1973, Nuclear Fission
[64]   A compact pulse shape discriminator module for large neutron detector arrays [J].
Venkataramanan, S. ;
Gupta, Arti ;
Golda, K. S. ;
Singh, Hardev ;
Kumar, Rakesh ;
Singh, R. P. ;
Bhowmik, R. K. .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2008, 596 (02) :248-252
[65]   SYSTEMATICS OF FISSION FRAGMENT TOTAL KINETIC-ENERGY RELEASE [J].
VIOLA, VE ;
KWIATKOWSKI, K ;
WALKER, M .
PHYSICAL REVIEW C, 1985, 31 (04) :1550-1552
[66]   ENERGY SPECTRUM OF NEUTRONS FROM THERMAL FISSION U-235 [J].
WATT, BE .
PHYSICAL REVIEW, 1952, 87 (06) :1037-1041
[67]   Statistics and nuclear reactions [J].
Weisskopf, V .
PHYSICAL REVIEW, 1937, 52 (04) :0295-0303
[68]   Synthesis of superheavy nuclei: How accurately can we describe it and calculate the cross sections? art. no. 014607 [J].
Zagrebaev, VI ;
Aritomo, Y ;
Itkis, MG ;
Oganessian, YT ;
Ohta, M .
PHYSICAL REVIEW C, 2002, 65 (01) :146071-1460714