Chương 3 Nghiờn Cựu Cơ Chá ChuyºN Α Trong Tỏn Xô 16O−12C 58546

116 Chương 3 Nghiờn cựu cơ chá chuyºn α trong tỏn xÔ 16O12C

[CTLQ2] Lờ Hoàng Chián, Đào Tián Khoa, Độ Cụng Cương, Nguyạn Hoàng Phỳc, "Consistent mean-field description of the 12C+ 12C optical potential at low energies and the astrophysical S factor", Physical Review C, vol. 98, 064604 (2018).

[CTLQ3] Nguyạn Trớ Toàn Phỳc, Raymond Mackintosh , Nguyạn Hoàng Phỳc, Đào Tián Khoa, "Elastic transfer and parity dependence of the nucleus- nucleus optical potential", Physical Review C, vol. 100, 054615 (2019).


Bỏo cỏo hởi nghà


[HN1] Nguyạn Hoàng Phỳc, Độ Cụng Cương, Đào Tián Khoa, "Alpha transfer in 16O+12C scattering", Hởi nghà Khoa hồc và Cụng nghằ HÔt nhõn toàn quốc lƯn thự 11 (VINANST11), Đà Nđng (2015).

[HN2] Nguyạn Hoàng Phỳc, Nguyạn Trớ Toàn Phỳc, Đào Tián Khoa, "Direct Alpha transfer in 16O+12C scattering at low energy, Hởi nghà Khoa hồc và Cụng nghằ HÔt nhõn toàn quốc lƯn thự 12 (VINANST12), Nha Trang (2017).

[HN3] Nguyạn Hoàng Phỳc, Đào Tián Khoa, Nguyạn Trớ Toàn Phỳc, Độ Cụng Cương, "Nuclear rainbow in the inelastic nucleus-nucleus scattering , Hởi nghà Khoa hồc và Cụng nghằ HÔt nhõn toàn quốc lƯn thự 13 (VINANST13), HÔ Long (2019).


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Nghiên cứu hiệu ứng cầu vồng và cơ chế chuyển alpha trong tán xạ ở năng lượng thấp và trung bình - 17

Tài liằu tham khÊo‌


[1] G.R. Satchler and W.G. Love, "Folding model potentials from realistic interactions for heavy-ion scattering", Phys. Rep. 55, 183 (1979).

[2] M.E. Brandan and G.R. Satchler, "The interaction between light heavy- ions and what it tells us", Phys. Rep. 285, 143 (1997).

[3] J.A. Adam, "The mathematical physics of rainbows and glories", Phys. Rep. 356, 229 (2002).

[4] D. T. Khoa, W. von Oertzen, H. G. Bohlen, and S. Ohkubo, Nuclear rainbow scattering and nucleus–nucleus potential, J. Phys. G 34, R111 (2007).

[5] G.R. Satchler, "Nucleus-Nucleus potentials", Nucl. Phys. A 409, 3c (1983).

[6] J. G. Cramer, R. M. DeVries, D. A. Goldberg, M. S. Zisman and C. F. Maguiref, "Unique energy-independent Woods-Saxon optical potential for 16O + 28Si elastic scattering", Phys. Rev. C 14, 2158 (1976).

[7] A. A. Ogloblin, Yu. A. Glukhov, W. H. Trzaska, A. S. Demyanova, S.

A. Goncharov, R. Julin, S. V. Klebnikov, M. Mutterer, M. V. Rozhkov,

V. P. Rudakov, G. P. Tiorin, D. T. Khoa, and G.R. Satchler, "New measurement of the refractive, elastic 16O+12C scattering at 132, 170, 200, 230, and 260 MeV incident energies", Phys. Rev. C 62, 044601 (2000).


117

118 TÀI LI›U THAM KHƒO


[8] D. A. Goldberg , S. M. Smith , H. G. Pugh, P. G. Roos and N. S. Wall, Scattering of 139-Mev Alpha Particles by 58Ni and 208Pb, Phys. Rev. C 7, 1938 (1973).

[9] D. A. Goldberg, S. M. Smith and G. F. Burdzik, "Refractive behavior in intermediate-energy alpha scattering", Phys. Rev. C 10, 1362 (1974).

[10] R. G. Stokstad, R. M. Wieland, G. R. Satchler, C. B. Fulmer, D. C. Hensley, S. Raman, L. D. Rickertsen, A. H. Snell, and P. H. Stelson, "Elastic and inelastic scattering of 12C by 12C from Ec.m. = 35-63 MeV", Phys. Rev. C 20, 655 (1979).

[11] S. Kubono, K. Morita, M. H. Tanaka, M. Sugitani, H. Utsunomiya, H. Yonehara, M. K. Tanaka, S. Shimoura, E. Takada, M. Fukuda, and K. Takimoto, "Back angle elastic scattering of 12C + 12C at E/A 10 MeV", Phys. Lett. B 127, 19 (1983).


[12] H. G. Bohlen, X. S. Chen, J. G. Cramer, P. Fr¨obrich, B. Gebauer, H. Lettau, A. Miczaika, W. von Oertzen, R. Ulrich, and Th. Wilpert, "Re- fractive Scattering and the Nuclear Rainbow in the Interaction of 12,13C with 12C at 20 MeV/N", Z. Phys. A 322, 241 (1985).

[13] A. S. Demyanova, H. G. Bohlen, A. N. Danilov, S. A. Goncharov, S. V. Khlebnikov, V. A. Maslov, Yu. E. Penionzkevich, Yu. G. Sobolev, W. Trzaska, G. P. Tyurin, and A. A. Ogloblin, "12C +12C large angle elastic scattering at 240 MeV", Nucl. Phys. A 834, 473c (2010).

[14] A. J. Cole, W. D. M. Rae, M. E. Brandan, A. Dacal, B. G. Harvey,

R. Legrain, M. J. Murphy, and R. G. Stokstad, "12C + 12C Reaction Cross Section between 70 and 290 MeV Obtained from Elastic Scatter- ing", Phys. Rev. Lett. 47, 1705 (1981).

[15] M. Buenerd, A. Lounis, J. Chauvin, D. Lebrun, P. Martin, G. Duhamel,

J. C. Gondrand, and P. De Saintignon, "Elastic and inelastic scattering of carbon ions at intermediate energies", Nucl. Phys. A 424, 313 (1984).


118

TÀI LI›U THAM KHƒO


[16] A. A. Ogloblin, D. T. Khoa, Y. Kondo¯, Yu.A. Glukhov, A. S. Demyanova,

M. V. Rozhkov, G. R. Satchler, and S. A. Goncharov, "Pronounced Airy structure in elastic 16O + 12C scattering at Elab=132 MeV", Phys. Rev. C 57, 1797 (1998).

[17] A.A. Ogloblin, S.A. Goncharov, Yu. A. Glukhov, A.S. Demyanova, M.V. Rozhkov, V.P. Rudakov, and W.H. Trzaska, "Nuclear Rainbow in Scat- tering and Reactions and Nucleus-Nucleus Interaction at Small Dis- tances", Phys. Atomic Nuclei 66, 1478 (2003).

[18] A.S. Dem’yanova et al., IAEA Database EXFOR; http://www-nds.iaea.org/exfor/.

[19] M. E. Brandan, A. Menchaca-Rocha, L. Trache, H. L. Clark, A. Azhari,

C. A. Gagliardi, Y. W. Lui, R. E. Tribble, R. L. Varner, J. R. Beene, and G. R. Satchler, "Refractive elastic scattering of 16O by 12C at 300 MeV", Nucl. Phys. A 688, 659 (2001).

[20] M. P. Nicoli, F. Haas, R. M. Freeman, S. Szilner, Z. Basrak, A. Morsad,

G. R. Satchler, and M. E. Brandan, "Detailed study and mean field in- terpretation of 16O by 12C elastic scattering at seven medium energies", Phys. Rev. C 61, 034609 (2000).

[21] D. T. Loan, B. M. Loc, and D. T. Khoa, "Extended Hartree-Fock study of the single particle potential: The nuclear symmetry energy, nucleon effective mass, and folding model of the nucleon optical potential", Phys. Rev. C 92, 034304 (2015).

[22] N. M. Hugenholtz and L. Van Hove, "A theorem on the single particle energy in a Fermi gas with interaction", Physica 24, 363 (1958).

[23] D. T. Khoa and O.M. Knyazkov, "Exchange Effects in Elastic and In- elastic Alpha- and Heavy-Ion Scattering", Z. Phys. A 328, 67 (1987).

[24] D. T. Khoa, H. G. Bohlen, W. von Oertzen, G. Bartnitzky, A. Blaze- vic, F. Nuoffer, B. Gebauer, W. Mittig, P. Roussel-Chomaz, "Study of


119

120 TÀI LI›U THAM KHƒO


refractive structure in the inelastic 16O+ 16O scattering at the incident energies of 250 to 1120 MeV", Nucl. Phys. A 759, 3 (2005).

[25] F. Michel and S. Ohkubo, "Airy structure in inelastic light-ion and light heavy-ion scattering", Phys. Rev. C 70, 044609 (2004); Nucl. Phys. A 738, 231 (2004).

[26] S. Ohkubo and Y. Hirabayashi, "Bose-Einstein condensation of α parti- cles and Airy structure in nuclear rainbow scattering", Phys. Rev. C 70, 041602(R) (2004).

[27] S. Ohkubo and Y. Hirabayashi, "Evidence for strong refraction of 3He in an α-particle condensate", Phys. Rev. C 75, 044609 (2007).

[28] Sh. Hamada, Y. Hirabayashi, N. Burtebayev, and S. Ohkubo, "Observa- tion of an Airy minimum in elastic and inelastic scattering of 3He from 12C at 50.5 and 60 MeV, and α-particle condensation in 12C", Phys. Rev. C 87, 024311 (2013).

[29] S. Ohkubo, Y. Hirabayashi, A.A. Ogloblin, Yu. A. Gloukhov, A.S. De- myanova, and W. H. Trzaska, "Refractive effects and Airy structure in inelastic 16O+ 12C rainbow scattering", Phys. Rev. C 90, 064617 (2014).

[30] A. C. Demyanova, V. N. Bragin, A. A. Ogloblin, A. L. Lebedev, J. M. Bang, S. A. Goncharov, S. N. Ershov, F. A. Gareev, and P. P. Korovin, "Angular distributions of elastic, inelastic and charge exchange reactions of 6Li+ 14C at E6Li = 93 MeV", Phys. Lett. B 184, 129 (1987).

[31] A. S. Demyanova, E. F. Svinareva, S. A. Goncharov, S. N. Ershov, F. A. Gareev, G. S. Kazacha, A. A. Ogloblin, and J. S. Vaagend, "Scattering of 3He on 12C and the inelastic form factor", Nucl. Phys. A. 542, 208 (1992).

[32] A. D’Arrigo, G. Fazio, G. Giardina, O. Yu. Goryunov, A. P. Ilyin, M. Sacchi, A. A. Shvedov, A. Taccone, I. N. Vishnevsky, and I. Yu. Zaiats, "Nuclear-Rainbow Effects by Transfer Reactions in the α+ 12C Interac- tion", Il Nuovo Cimento A 107, 1353 (1994).

120

TÀI LI›U THAM KHƒO


[33] P. D’Agostino, G. Fazio, G. Giardina, O.Yu. Goryunov, M. Sacchi, A.A. Shvedov, I.N. Vishnevsky, and I.Yu. Zaiatz, "Nuclear-rainbow effect by transfer reactions", Nucl. Phys. A. 583, 437 (1995).

[34] W. von Oertzen and H. G. Bohlen, "Elastic transfer processes in heavy ion scattering", Phys. Rep. 19C , 1 (1975).

[35] M. C. Morais and R. Lichtenth¨aler, "α-Spectroscopic factor of 16Ogsfrom the 12C(16O,12C)16O reaction", Nucl. Phys. A 857, 1 (2011).

[36] S. Szilner, W. von Oertzen, Z. Basrak, F. Haas, and M. Milin, "Elastic α-transfer in the elastic scattering of 16O + 12C", Eur. Phys. J. A 13, 273 (2002).

[37] K. A. Gridnev, N. A. Maltsev, and N. V. Leshakova, "Effect of elastic and inelastic cluster transfer on elastic 16O + 12C and 16O + 16O scattering", Bull. Russ. Acad. Sci. Phys. 77, 852 (2013).

[38] Sh. Hamada, N. Burtebayev, and N. Amangeldi, "Detailed study for 16O12C + α and 12C 11B + p spectroscopic factors", Int. J. Mod. Phys. E 23, 1450061 (2014).

[39] A. T. Rudchik et al.,"Isotopic effects in elastic and inelastic 12C + 16,18O scattering" Eur. Phys. J. A 44, 221 (2010).

[40] A. Volya and Y. M. Tchuvilsky, "Nuclear clustering using a modern shell model approach", Phys. Rev. C 91, 044319 (2015).

[41] G. R. Satchler, "Direct Nuclear Reactions" (Oxford Univ. Press, 1983).


[42] N. K. Glendernning, "Direct Nuclear Reactions" (World Scientific, 2004).


[43] I. J. Thompson and F. M. Nunes,"Nuclear Reactions for Astrophysics"

(Cambridge Univ. Press, 2009).


[44] J. Raynal, "Computing as a Language of Physics" (IAEA, Vienna, 1972).


[45] I. Thompson, "Getting started with fresco", Comput. Phys. Rep 7, 167- 212 (1988).

121

122 TÀI LI›U THAM KHƒO


[46] D. T. Khoa and G. R. Satchler, "Generalized folding model for elastic and inelastic nucleus–nucleus scattering using realistic density dependent nucleon–nucleon interaction", Nucl. Phys. A 668, 3 (2000).

[47] D. C. Cuong, Luên ỏn tián sĩ "Nghiờn cựu cĐu trỳc và tương tỏc hÔt nhõn trong phÊn ựng tỏn xÔ alpha-hÔt nhõn" (Viằn vêt lý, 2015).

[48] L. H. Chien, Luên ỏn tián sĩ "Thá trung bỡnh hÔt nhõn mụ tÊ phÊn ựng tờng hủp 12C+12C và 16O+12O đ vựng năng lưủng thĐp" (Trướng ĐÔi hồc Khoa hồc Tỹ nhiờn Tp.HCM, 2020).

[49] D. T. Khoa, "α-nucleus optical potential in the double-folding model", Phys. Rev. C 63, 034007 (2001).

[50] H. De Vries, C. W. De Jager, and C. De Vries, "Nuclear charge-density- distribution parameters from elastic electron scattering", At. Data Nucl. Data Tables 36, 495 (1987).

[51] M. El-Azab Farid, G. R. Satchler, "A density-dependent interaction in the folding model for heavy-ion potentials", Nucl. Phys. A 438, 525 (1985).

[52] M. Kamimura, "Transition densities between the 0+, 2+, 4+, 0+, 2+, 1

1 1 1 2 2 1

and 31states in 12C derived from the three-alpha resonating-group wave

functions", Nucl. Phys. A 351, 456 (1981).

[53] Y. Enyo, "The Structure of Ground and Excited States of 12C", Prog. Theo. Phys. 117, 665 (2007).

[54] Y. Suzuki, "Structure Study of T = 0 States in 16O by 12C + α Cluster- Coupling Model. I", Prog. Theor. Phys. 55, 1751 (1976); 56, 111 (1976).

[55] S. Okabe, "in Tours Symposium on Nuclear Physics II", edited by H. Utsunomiya et al. (World Scientific, Singapore, 1995), p. 112, and private communications.

[56] G. Bertsch, J. Borysowicz, H. McManus, and W. G. Love, "Interactions for inelastic scattering derived from realistic potentials", Nucl. Phys. A 284, 399 (1977).

122

TÀI LI›U THAM KHƒO


[57] N. Anantaraman, H. Toki, and G. F. Bertsch, "An effective interaction for inelastic scattering derived from the Paris potential", Nucl. Phys. A 398, 269 (1983).

[58] J. P. Jeukenne, A. Lejeune, and C. Mahaux, "Optical-model potential in finite nuclei from Reid’s hard core interaction", Phys. Rev. C 16, 80 (1977).

[59] A. M. Kobos, B. A. Brown, P. E. Hodgson, G. R. Satchler, and A. Budzanowski, "Folding model analysis of α-particle elastic scattering with a semirealistic density-dependent effective interaction", Nucl. Phys. A 384, 65 (1982).

[60] A. M. Kobos, B. A. Brown, R. Lindsay, and G. R. Satchler, "Folding- model analysis of elastic and inelastic α-particle scattering using a density-dependent force", Nucl. Phys. A 425, 205 (1984).

[61] M. E. Brandan and G. R. Satchler, "Folding model analysis of 12,13C+12C and 16O+12C scattering at intermediate energies using a density- dependent interaction", Nucl. Phys. A 487, 477 (1988).

[62] D. T. Khoa and W. von Oertzen, "A nuclear matter study using the density dependent M3Y interaction", Phys. Lett. B 304, 8 (1993).

[63] D. T. Khoa and W. von Oertzen, "Refractive alpha-nucleus scattering: a probe for the incompressibility of cold nuclear matter", Phys. Lett. B 342, 6 (1995).

[64] D. T. Khoa, G. R. Satchler, and W. von Oertzen, "Nuclear incompress- ibility and density dependent NN interactions in the folding model for nucleus-nucleus potentials", Phys. Rev. C 56, 954 (1997).

[65] D. T. Loan, D. T. Khoa, N. H. Phuc, "Rearrangement term in the folding model of the nucleon optical potential", J. Phys. G 47 035106 ( 2020).

[66] G. E. Brown, "Landau, Brueckner-Bethe, and Migdal Theories of Fermi Systems", Rev. Mod. Phys. 43, 1 (1971).


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