Optical model analysis of deuteron elastic scattering on ¹⁶O nuclei regarding resonance contribution
- 作者: Generalov L.N.1, Zherebtsov V.A.1, Morozova A.V.1, Selyankina S.M.1, Taova S.M.1
-
隶属关系:
- Russian Federal Nuclear Center – All-Russian Research Institute of Experimental Physics
- 期: 卷 88, 编号 11 (2024)
- 页面: 1804–1814
- 栏目: Fundamental problems and applications of physics of atomic nucleus
- URL: https://journal-vniispk.ru/0367-6765/article/view/285133
- DOI: https://doi.org/10.31857/S0367676524110243
- EDN: https://elibrary.ru/FJEVLK
- ID: 285133
如何引用文章
详细
Using the resonance optical-model code OptModel there were fitted all available experimental data of deuteron elastic scattering on ¹⁶O nuclei: differential cross section data at deuteron energies Ed from 0.98 to 200 MeV and ¹⁶O+d total reaction cross section from 38 to 97 MeV. Violation of scattering matrix unitarity (optical-model + resonance) at several energies did not exceed 14% what corresponds to mean errors of the data analyzed.
作者简介
L. Generalov
Russian Federal Nuclear Center – All-Russian Research Institute of Experimental Physics
编辑信件的主要联系方式.
Email: otd4@expd.vniief.ru
俄罗斯联邦, Sarov, 607188
V. Zherebtsov
Russian Federal Nuclear Center – All-Russian Research Institute of Experimental Physics
Email: otd4@expd.vniief.ru
俄罗斯联邦, Sarov, 607188
A. Morozova
Russian Federal Nuclear Center – All-Russian Research Institute of Experimental Physics
Email: otd4@expd.vniief.ru
俄罗斯联邦, Sarov, 607188
S. Selyankina
Russian Federal Nuclear Center – All-Russian Research Institute of Experimental Physics
Email: otd4@expd.vniief.ru
俄罗斯联邦, Sarov, 607188
S. Taova
Russian Federal Nuclear Center – All-Russian Research Institute of Experimental Physics
Email: otd4@expd.vniief.ru
俄罗斯联邦, Sarov, 607188
参考
- Генералов Л.Н., Жеребцов В.А., Таова С.М. // Изв. РАН. Сер. физ. 2016. Т. 80. № 3. С. 328; Generalov L.N., Zherebtsov V.A., Taova S.M. // Bull. Russ. Acad. Sci. Phys. 2016. V. 80. No. 3. P. 295.
- Генералов Л.Н., Жеребцов В.А., Селянкина С.М. // Изв. РАН. Сер. физ. 2021. Т. 85. № 10. С. 1461; Generalov L.N., Zherebtsov V.A., Selyankina S.M. // Bull. Russ. Acad. Sci. Phys. 2021. V. 85. No. 10. P. 1136.
- Generalov L.N., Zherebtsov V.A., Selyankina S.M. // LXXII Int. Conf. “NUCLEUS-2022: Fundamental problems and application”. Book of abstracts. Moscow, 2022. P. 112.
- Генералов Л.Н., Жеребцов В.А., Селянкина С.М. // Изв. РАН. Сер. физ. 2023. Т. 87. № 12. С. 1828.
- Generalov L.N., Zherebtsov V.A., Selyankina S.M. // LXXII Int. Conf. “NUCLEUS-2022: Fundamental problems and application”. Book of abstracts. Moscow, 2022. P. 113.
- McLane V. EXFOR. Exchange formats manual. NY: Brookhaven National Laboratory, 2003.
- http://www-nds.iaea.org/exfor/exfor.htm
- Cowley A.A., Heymann G., Keizer R.L. et al. // Nucl. Phys. 1966. V. 86. P. 363.
- Korff A., Haefner P., Baumer C. et al. // Phys. Rev. C. 2004. V. 70. P. 067601.
- Bingyin H., Zuxun S., Youxiang Z. et al. // Conf. Nucl. Physics. (Shanghai, 1974). P. 89.
- Seiler R.F., Jones C.H., Anzick W.J. et al. // Nucl. Phys. 1963. V. 45. P. 647.
- Hinterberger F., Mairle G., Schmidt-Rohr U. // Nucl. Phys. A. 1968. V. 111. P. 265.
- Rafi-kheiri H., Kakuee O., Lameli-Rachti M. // Nucl. Instrum. Meth. B. 2016. V. 373. P. 40.
- Hatanaka K., Imai K., Kobayashi S. et al. // Nucl. Phys. A. 1980. V. 340. P. 93.
- Nguyen D. C. // J. Phys. Soc. Japan. 1966. V. 21. P. 2462.
- Gallman A., Fintz P., Hodgson P.E. // Nucl. Phys. 1966. V. 82. P. 161.
- Davison N.E., Dawson W.K., Roy G. et al. // Canad. J. Phys. 1970. V. 48. P. 2235.
- Dietzsch O., Douglas A., Pessoa E. Farrelly et al. // Nucl. Phys. A. 1968. V. 114. P. 330.
- Mayo S., Testoni J.E. // Nucl. Phys. 1962. V. 36. P. 615.
- Zhenlin M., Youxiang Z., Zuxun S. et al. // Conf. Low Energy Nucl. Phys. 1972. P. 3.
- Cavallaro S., Cunsolo A., Potenza R. et al. // Nuovo Cim. A. 1972. V. 14. P. 692.
- Smith G.R., Shepard J.R., Boudrie R.L. et al. // Phys. Rev. C. 1984. V. 38. P. 593.
- Newman E., Becker L.C., Preedom B.M. et al. // Nucl. Phys. A. 1967. V. 100. P. 225.
- Corrigan K.W., Prior R.M., Darden S.E. et al. // Nucl. Phys. A. 1972. V. 188. P. 164.
- Amsel G. // Ann. Phys. 1964. V. 9. P. 297.
- Matsuoka N., Sakai H., Saito T. et al. // Nucl. Phys. A. 1986. V. 455. P. 413.
- Fitz W., Jahr R., Santo R. // Nucl. Phys. A. 1967. V. 101. P. 449.
- Ermer M., Clement H., Holetzke G. et al. // Nucl. Phys. A. 1991. V. 533. P. 71.
- Alty J.L., Green L.L., Huby R. et al. // Nucl. Phys. A. 1967. V. 97. P. 541.
- Nguyen V.S., Yanlin Y., Arvieux J. et al. // Nucl. Phys. A. 1987. V.464. P. 717.
- Матусевич В.А., Соловьев В.А., Чернов И.П. // Ядерн. физ. 1972. Т. 15. № 4. С. 670.
- Auce A., Carlson R.F., Cox A.J. et al. // Phys. Rev. C. 1996. V. 53. P. 2919.
- Абрамович С.Н., Генералов Л.Н., Гужовский Б.Я. и др. // Изв. РАН. Сер. физ. 1993. Т. 57. С. 179.
- Генералов Л.Н., Абрамович С.Н., Звенигородский А.Г. // Изв. РАН. Сер. физ. 2000. Т. 64. С. 440.
- Ajzenberg-Selove F. // Nucl. Phys. A. 1983. V. 392. P. 1.
- http:// www-nds.iaea.org/relnds/vcharthtml/VChartHTML.html.
- https://www.nndc.bnl.gov/ensdf/ensdf/xundl.jsp.
- Busch C.E., Clegg T.B., Datta S.K., Ludvig E.J. // Nucl. Phys. A. 1974. V. 223. P. 183.
- Haixia A., Chonghai C. // Phys. Rev. С. 2006. V. 73. P. 054605.
- https://www.nds.-iaea.org/exfor/servlet/E4sSearch2
补充文件
