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1 P µ ± Î,.. É ÉÖ, ˆ. ÍµÊ 1,.. ³ Ì 2,. ²µÊ Ò 1,. µ² Ò 3,. Š ² ±Î,.. ŠÊ²Ó±µ,.. µ ɵ,. Œ. ʱÓÖ µ,.. Œ ± Ö,.. Œ ²µ,.. ŒÊ Òα,.. Ö,.. µ,. Š. ±µ ²,. ƒ. µ µ²,.. Õ³µ 1 Š ˆ ˆŒ ˆŸ 6 He Ÿ Œˆ 197 Au ˆ 206 Pb ² µ Ê ² Ó³ Ÿ Œ É ²Ò 55- ±µ Ë Í µ Ö µ Ë ± ( ±É- É Ê, 28 Õ Ö Ä1 Õ²Ö 2005.) 1 ˆ É ÉÊÉ Ö µ Ë ±,, Ì Ö 2 ± Ë Î ± É ÉÊÉ, ³ Ö 3 ˆ É ÉÊÉ Ö µ Ë ± Ÿ Š, ²³ - É, Š Ì É

2 µ ± Î... P ±µéµ Ò µ µ µ É ³µ É Ö 6 He Ö ³ 197 Au 206 Pb É ² Ò Ô± ³ É ²Ó µ ³ Ò ËÊ ±Í µ Ê Ö ²Ö ± - ²µ ² Ö Ö µ ² ÊÕÐ ³ ³ É µ µ, 206 Pb( 6 He, 2n) 210 Po 197 Au( 6 He, xn) 203 xn Tl, x = 2Ä7, É ± ²Ö ±Í Î 197 Au µ µ ³ µéµ µ 196 Au, 198 Au 199 Au. ± ³ É µ µ ² Ö Ê ±µ É ²Ó µ³ ±µ³ ² ± µ ±É ÒÌ Êαµ DRIBs ˆŸˆ. ˆ É µ ÉÓ Êα 6 µ É ²Ö² , ³ ± ³ ²Ó Ö Ô Ö (60,3±0,4) ŒÔ. ²Õ- ²µ Ó Î É ²Ó µ Ê ² Î Î Ö ± ² ±Í ² Ö Ö ³ ÊÌ É µ µ µ Ó µ µ ² É Ô µ Õ Î É ³ µ É É É Î ±µ ³µ ². ɳ Î µ µ ÒÎ µ µ µ µ Ö µéµ 198 Au, É ± µé µ É ²Ó µ ³ ²µ Î µ µ Ö µéµ 199 Au. µ- Ò ² Ô± ³ É ²Ó ÒÌ ÒÌ ³± Ì É É É Î ±µ ³µ ² µ Ê ÒÌ Ö ÊΠɵ³ µ ² µ É ²Ó µ µ ² Ö Ö Ö 6 µ- ± ² ̵ µï µ ² Ô± ³ É ²Ó ÒÌ Î É ÒÌ Î Î Ö ²Ö µ Ó µ µ ² Ö Ö Ö ±Í 206 Pb + 6 He. µé Ò µ² µ ɵ Ö ÒÌ ±Í ³. ƒ.. ² µ ˆŸˆ. É Ñ µ µ É ÉÊÉ Ö ÒÌ ² µ. Ê, 2005 Penionzhkevich Yu. E. et al. P Some Peculiarities in the Interaction of 6 He with 197 Au and 206 Pb Excitation functions were measured for fusion followed by the evaporation of neutrons in the reactions 206 Pb( 6 He, 2n) 210 Po and 197 Au( 6 He, xn) 203 xn Tl, where x = 2Ä7, as well as for the transfer reactions on a 197 Au target with the formation of the 196 Au, 198 Au and 199 Au isotopes. The experiment was carried out at the Dubna Radioactive Ion Beams (DRIBs) complex of FLNR, JINR. The 6 He-beam intensity was about s 1, the maximum energy being (60.3±0.4) MeV. A signiˇcant increase in the cross section was observed below the Coulomb barrier for the fusion reaction with the evaporation of two neutrons compared to statistical model calculations. Unusual behaviour for the production of 198 Au is observed, whereas the cross section for the formation of 199 Au is very low. The analysis of the data in the framework of the statistical model for the decay of excited nuclei, which took into account the sequential fusion of 6 He, has shown good agreement between the experimental and the calculated values of the cross sections for the case of sub-coulomb-barrier fusion in the 206 Pb + 6 He reaction. The investigation has been performed at the Flerov Laboratory of Nuclear Reactions, JINR. Preprint of the Joint Institute for Nuclear Research. Dubna, 2005

3 ˆ µ ² ³ ³µ É Ö Ö É µ Ò³ ²µ Ê µîé 10 ² É Ö ²Ö- É Ö ³ ɵ³ Ô± ³ É ²Ó ÒÌ É µ É Î ± Ì ² µ. µ Ò É Ò Ò ÕÉ ±Í Êα 6 µ µ ³ µ É ÒÌ Ö Ì µ ² ÊÕÐ ³ µ³ µ ± ² ³ Ö É µ µ ² ² Ö. ˆ É ± ÔÉ ³ ² µ Ö³ Ò² Ò µö Ï Ö 1995 µ Ê Ô± - ³ É ²Ó µ µéµ [1], ÊÎ ±Í ² Ö µ É µ µ Ö 215 At, µ µ Ï µ Ö ³µ É 6 Ö ³ 209 Bi, Ò²µ µ - Ê µ ÊÐ É µ Ê ² Î Î Ö, µ µ µ µ Ó µ µ ² - É, µ Õ Î É ³ µ É É É Î ±µ ³µ ². ±µ²ó±µ É ±µ ÔËË ±É Ê ² Ö µöé µ É ² Ö Ö µ Ó µ µ ² É Ò² ± Ö É µ É Î ± Ì µé [2, 3]. Î É µ É, ²Ö 11 Li Ò²µ ± µ Ê ² Î µöé µ É µ ± µ Ö (ÉÊ ² µ Ö) Î µé Í ²Ó Ò Ó ² É µéö µ µ ² Ö ³ - É µ µ ²µÉ µ É µ Õ µ ÒÎ Ò³ ɵ³ Ò³ Ö ³, µ²µ- Ò³ ² µ² Ò É ²Ó µ É. ± ² Ö, ± ± µ± µ µé [4], ³µ ÊÉ É ± Õ ±µ²² ±É ÒÌ É µ µ Ò, µµé É É µ, Ê ² Î Õ Î Ö ±Í ³µ É Ö, µ µ µ µ Ó µ µ ² É. µéö µ ² Ö µ ³ É Ì ±- É µ ²Ö É µ µ- ÒɵΠÒÌ ² ± Ì Ö, Ê ±µéµ ÒÌ ² Î ² É ÒÌ É µ µ ³µ É µ ÉÓ ± µ µ Õ É µ µ µ ²µ. Š Ö ³ É - ±µ É Ê±ÉÊ µ µé µ ÖÉ Ö 6 11 Li. Ê µ ɵ µ Ò, É ± Ö Ö ²ÖÕÉ Ö ² µ Ö Ò³, Îɵ µ² µ µ ÉÓ ± Ê ² Î Õ µöé µ É Ì - ², ±µéµ Ò ³µ É µ µ µ ÉÓ Ö µ ² ÊÕÐ ³ ² Ö ³ Ö µ É É± (±µ ) Ö µ³ ³ Ï ² ±Í Ö³ Πʱ²µ µ ²Ó Ï µ ³µ É Ö Ö. ±µ ³ µ µµ µí µ Í É Ê Ö É ² Ô± ³ É ²Ó ÒÌ ÒÌ Ò Ò É µ ̵ ³µ ÉÓ ÊÎ É Ì ± - ²µ ±Í. Œ Ê É ³ µ ² µ Ô± ³ É ²Ó µ µéò µ ÊÎ Õ ±- Í ² Ö Ö- ² Ö Ö ³ 6 [1] Ò² ÖÉ Ö Ô± ³ ɵ, ±µéµ ÒÌ Ò² ² Ò µ Òɱ µ ² ÉÓ µöé µ ÉÓ ² Ö Ö Ö ³ 6 Ô ÖÌ ² ±Ê²µ µ ±µ µ Ó. ±, ³, µé [5] ² µ ² Ó É, Îɵ µé [1], ±Í Ö 209 Bi + 6 ; Ò² ³ Ò ËÊ ±Í µ Ê Ö µ É µ µ Ö ³ É Ì É µ µ. ʲÓÉ Éµ µéò [5] Î É ³ µ É É É Î ±µ ³µ ² 1

4 µ µ Ö µ É µ µ Ö µ µ É ²µ ÔËË ±É Ê ² Ö µ Ó µ µ ² Ö Ö Ö ³ 6. ² ÊÕÐ Ö µé µ ÊÎ Õ ËÊ ±- Í µ Ê Ö ²Ö ± ² ² Ö U [6] É ± ² ± Ò µ Ê µ Î É ²Ó µ³ Ê ² Î µöé µ É ±Í ² Ö Ö- ² Ö Ö ³ 6 µ Ó µ µ ² É Ô. ±µ µ Ò Ô± ³ É Ôɵ Ê Ò Éµ µ, ±µéµ µ³ Ò² µ Ò ³ Ö µ ±µ²±µ ² Ö Ö µ- α-î É Í ³, µ µ Ï ³ Ö µ ² ² 6, µ± ², Îɵ µ Ó µ ² Ö - ² ²Ö Ôɵ ±Í ² ±µ µ ÑÖ ÉÓ ² ³ Ö Ê µ ² Î ³ µ µ µ ² ÊÌ É µ µ. ɵ µ ɵÖÉ ²Ó- É µ É ²µ ɵ µ µéò [6] Ò ÉÊ ÉÓ µ µ É ÉÓ [7], ±µéµ µ µ ÊÉ ÕÉ, Îɵ Ôɵ ±Í µé ÊÉ É Ê É Ê ² Î Ö ±Í ² Ö Ö Ö ³ 6. ˆ³ É Ö Ð ±µ²ó±µ µé µ ÊÎ Õ ±Í ² Ö Ö Ö ³ 6 [8, 9]. ±µ µ²êî Ò ÔÉ Ì µé Ì Ò É ÊÕÉ µ²óï É É É Î ±µ µ É µ Ö µ² ˵ ³ - É ÒÌ Ô± ³ ɵ Ò ² ³ Ì ± ²µ ±Í. ² Î É ± Ì µé µ Î ÒÌ ÒÌ É ²Ó É Ê É µ É Ê µ ÉÖÌ µ- É µ ± Ô± ³ ɵ Êα Ì µ ±É ÒÌ Ö, µ- ÒÌ, - ² - µ É µ É Éµ Î ÒÌ Êαµ, Îɵ µ µ²ö É µ²êî ÉÓ É É É - Î ± Ò Ê²ÓÉ ÉÒ, µ µ µ µ ² É µ±µ²µ Ó ÒÌ Ô. µ- ɵ ÒÌ, ²Ö ² µ Ö ËÊ ±Í µ Ê Ö Ï µ±µ³ µ Ô (5Ä70 ŒÔ /A) ̵ É Ö ÉÓ Ô Õ Êα, µ²ó ÊÖ µ ²µ- É É ², Îɵ ÊÐ É µ Ê ² Î É µ Ô É Î ± µ. ±µ Í, µé µ É ²Ó µ ±µ É µ É Êα Î É Í µ ̵ ³µ µ²ó µ- ÉÓ É ±Éµ Ò É ³Ò Ò µ±µ ÔËË ±É µ ÉÓÕ É Í, µ²µ- Ò µ ³ Ê ² ³ µ µé µï Õ ± ÕÐ ³Ê ÊαÊ. Ôɵ Ò²µ ÊÎÉ µ ³ µ µéµ ± ÒÌ Ô± ³ ɵ. Ê ± Ê ±µ É ²Ó µ µ ±µ³ ² ± µ ±É ÒÌ Êαµ DRIBs [10] Ÿ ˆŸˆ ±µ Í 2004 µ µ µ² ² µ²êî ÉÓ Êα 6 É µ ÉÓÕ Ï µ±µ³ µ Ô (3Ä10 ŒÔ /A) Ô É Î ± ³ Ï ³ ÌÊ 1 %. µ ̵ ³µ µé³ É ÉÓ, Îɵ µ µ Ò³ Ê ²µ Ö³ ³µ ÊÉ Ê µ ² - É µ ÖÉÓ Éµ²Ó±µ Ê ±µ É ²Ó Ò ±µ³ ² ± Ò, µ µ Ò ISOL-³ ɵ. Š É ± ³ ±µ³ ² ± ³, ± µ³ DRIBs, µé µ ÖÉ Ö SPIRAL1 µ Í Ê ±µ - É ²Ó Ê -²Ö- ( ²Ó Ö). ±µ Ô Ö Êα 6 Ê -²Ö- ÒÏ É 5 ŒÔ /A. Š Š ˆŒ Ô± ³ É µ²ó µ ² Ö Êε± µ µ 6 Ô µ±µ²µ 10 ŒÔ /A, µ²êî Ò Ê ±µ É ²Ó µ³ ±µ³ ² ± DRIBs ˆŸˆ ( Ê ). ±µ É ²Ó Ò ±µ³ ² ± DRIBs ±²ÕÎ É Ö É ³ Í ±²µÉ µ µ Œ µ ɵ Ö ÒÌ ±Í ˆŸˆ ( ³.. 1). ±µ Ò 2

5 . 1. Ì ³ µ²êî Ö µ ±É µ µ Êα 6 He Ê ±µ É ²Ó µ³ ±µ³ ² ± DRIBs Í ±²µÉ µ -400 µ Ô 35 ŒÔ /A Êε± 7 Li µ³ µ ² ɵ² ÉÊÕ ²² ÊÕ ³ Ï Ó, ʲÓÉ É 9 ( 7 Li, p)- ±Í µ µ Ò ² Ó Ö 6, ±µéµ Ò Ò² É ³ Ï ² Ó µ ÉÒ Ê ² µ Ò Éµ. ɵ ² Ö µ É ³ ÉÊ Ò 1600 C, ɵ³Ò 6 ËËÊ - µ ² ± ³ Ê ECR- ɵΠ±. µ ² µ Í Éµ³µ 6 µ µ³ ɵΠ± µ µ Ö Ò µ Ò 6 É µ É µ ² Ó µ ɵ µ Ê ±µ É ²Ó -400, µ Ê ±µ Ö² Ó µ Ô 10 ŒÔ /A. Ò µ Êα 6 +2 µ- µ ² Ö ³ ɵ µ³ µ ± Ê ±µ ÒÌ µ µ Ö ÒÌ µ µ 6 ɵ ±µ ²Õ³ µ ˵²Ó. É ³ Í Ö ³ Ê ±µ Ö É µ É µ ± Êα ± Ë Î ±µ Ê É µ ± µ µ² ² µ µ² É ²Ó µ ±µ²² ³ Í µ²êî ÉÓ Êε± 6 +2 ³ µ³ 7 8 ³³ µ É µ Ë Î ±µ Ê É µ ±µ Ô 60,3 ŒÔ, Ï ³ µ Ô E = ±0,4 ŒÔ É µ ÉÓÕ Éµ± Î µ µ Êα 7 Li 1,8 ³±A (. 2). ²Ö É µ ± Êα ±µô É Î ± Ì µ µ 6 ± ² É µ - É µ ± µ²ó µ ² Ó Í É ²²ÖÍ µ Ò É ±Éµ Ò [11]. µ Ò - ³ É Ò Êα 6 ( É µ ÉÓ, ² ³ Ò) µ ²Ö² Ó µ É µ Ë Î ±µ Ê É µ ±µ Í ²Ó µ µé µ ³ µ µ µ µ²µî µ µ µ Í µ ²Ó µ ± ³ µ ²Ö µ É ± Êα [12]. Šµ Î Ö Ô Ö Êα 6 ³ Ö² Ó µ³µðóõ ³ É µ µ ±É µ³ É Œ -144 [13]. 3

6 . 2. µë ²Ó Êα 6 He, Ò µ µ Í ±²µÉ µ -400, µ Ô É Î ±µ Ï Êα 6 ³Ò µ ² Í ±² Ô± ³ ɵ µ ÊÎ Õ ³µ - É Ö 6 Ê ³ ɵ³ Ò³ Ö ³. ɵÖÐ µé É ² Ò Ò µ ³ Õ ËÊ ±Í µ Ê Ö ±Í ² Ö Ö ±Í - Πʱ²µ µ. ˆ ³ Ò̵ µ µ ʱɵ ±Í ² Ö Ö µ ² - ÊÕÐ ³ ³ µ É µ µ Ö x É µ µ ±Í Πʱ²µ µ µ µ ²µ Ó µ²ó µ ³ ±É Í µ µ ³ ɵ ±. ²Ö ³ - Ö ËÊ ±Í µ Ê Ö Êα 6 Ê É ² ² Ó µ ² µ É ²Ó µ ɵ ± : Î ² ɵ ± µ²µéòì ˵²Ó ɵ²Ð ³ µé 13 µ 50 ³±³, µ² ² Ó Éµ ± ɵ ± Ì (600Ä700 ³± / ³ 2 ) 206 Pb-³ Ï (. 3). ÔÉ ³ ɵ ± ³ ³ Ð ² Ó µ µ Í µ ²Ó Ö µ É - Î ± Ö ± ³, ±µéµ Ö µ²ó µ ² Ó ²Ö É µ ± Êα 6 ³ Ï Ó,. 3. Ì ³ Ô± ³ ɵ µ ±É Í µ µ ³ ɵ ± Êα 6 He Ê³Ö µ ² - µ É ²Ó Ò³ ɵ ± ³, Ê É µ ² Ò³ µ µ Í µ ²Ó µ ± ³ µ (1): ɵ ±µ µ²µéòì ˵²Ó (2) ɵ ±µ ɵ ± Ì 206 Pb-³ Ï (3). Ê ± Ò Ìµ Ö Ò̵ Ö Ô 6He ³ Ö µ É É µ µ ² Ö Êα µ ² Ö µ É - µ É. Êε± 6 µ ² µìµ Ö µ ± ÊÌ Éµ µ± µ ² ³ É Ò ±É µ³ É Œ -144, µ³µðóõ ±µéµ µ µ ³ Ö² Ó µ É - 4

7 ÉµÎ Ö Ô Ö Êα. Ö Î É Í 6 µé Ô ± µ³ µ - ± Î ÉÒ ² Ó µ µ ³³ LISE [14], µ É ÉµÎ Ö Î É Ö Ô Ö µ ² µìµ Ö Ì µ ±µ -³ Ï 6 ² Ó ³ µ ³ É µ³ ±É µ³ É. ± ³ µ µ³, ³µÉ Ö µé µ É ²Ó µ Ï µ- ±µ Ô É Î ±µ ² 6 ±µ Í µ ± (±2 ŒÔ ) µ²õé µ Î Ô µ ²Ö²µ Ó Ìµ µï ɵΠµ ÉÓÕ ( ÌÊ 1 ŒÔ ). µ ʱÉÒ ±Í ± ²µ ² Ö Ö ( µéµ Ò 203 xn Tl) É Ë Í µ - ² Ó ³ ɵ µ³ off-line ² γ- ±É µ, µ²êî ÒÌ µ³µðóõ HPGe γ- ±É µ³ É µ. ËË ±É µ ÉÓ γ- ±É µ³ É µ ± µ² µ µ µ ²µÐ - Ö (E γ = 662 ±Ô ) µ É ²Ö² 10 %, Ô É Î ±µ Ï Å 1,5 ±Ô ²Ö E γ =1800 ±Ô. ˆ É Ë Í µ Ò ± γ- ±É Ì ² ² µéµ ³ l, Ö ²ÖÕÐ ³ Ö µ 汃 ³ µ Ê Ö µ É µ µ Ö 203 Tl µ ² Ö µ µé 2 µ 7 É µ µ. É ² Í Ò - µ Ò µ²ê, Ô µé µ É ²Ó Ò Ò̵ Ò µ² É ÒÌ γ- ̵ µ µ ʱɵ ² Ê ³ÒÌ ±Í ² Ö Ö. Ó Ò µ Ò µ²ê ÔÉ Ì Ö. µ ³ ÔÉ ³ Ì ±É É ± ³ µ µ ² Ó É Ë ± Í Ö Ö - µ ʱɵ ² Ê ³ÒÌ ± ²µ ±Í. ±É É ± É µéµ µ 203 xn Tl xn Ÿ µ-µ É Éµ± T 1/2,Î 2n 3n 4n 5n 6n 7n E γ,±ô (I γ,%) 201 Tl 72,91 167,4 (10 %) 200 Tl 26,1 367,9 (87 %) 199 Tl 7,42 247,26 (9,3 %) 198 Tl 5,3 675,88 (11 %); 587,2 (52 %) 197 Tl 2,84 152,2 (7,3 %) 196 Tl 1,84 344,9 (2 %) Š µ³ ɵ µ, ±É Ì Ò² É Ë Í µ Ò γ- ̵ Ò µéµ µ 196 Au, 198 Au 199 Au, ±µéµ Ò Ö ²Ö² Ó µ 汃 ³ ±Í Ò Ö ³ Ï µ µ µ É µ ( 196 Au) ±Í µ Ì É µ µ µ ( 198 Au) ÊÌ ( 199 Au) É µ µ ʲÓÉ É ³µ É Ö Ö Au. µ²µ- Ö Éµ ±µ µ²µéòì ˵²Ó ɵ ± ³ Ï 206 Pb µ ² µ ²ÊÎ - Ö ³ Ö² Ó α- ±É µ³ É Í ²ÓÕ µ²êî Ö Ëµ ³ Í µ ËÊ ±- Í µ Ê Ö ±Í ² Ö Ö µ µ ³ µ É µ µ Ö 212 µ µ ² ÊÕÐ µ Ö ÊÌ É µ µ, 206 b( 6, 2n) 210 µ, µ Ô Êα 6 µé 13 µ 24 ŒÔ (±Ê²µ µ ± Ó ²Ö µ ±Í 20 ŒÔ ). ˆ É Ë ± Í Ö Ö 210 µ µ ÊÐ É ²Ö² Ó µ Ô α-î É Í (E α = 5,3 ŒÔ ) µ Ê µ²ê (T 1/2 = 138 ). É Î ±µ Ï α- ±É µ³ É µ É ²Ö²µ 50 ±Ô, µ² Ö ÔËË ±É µ ÉÓ - É Í α-î É Í Ò² µ±µ²µ 50 %. 5

8 Š ˆŒ œ œ ˆ ˆ ˆ µ µ ³ ÒÌ Ò̵ µ µéµ µ, µ µ Ï Ì Ö µ ² - Ö µ É µ µ Ö 203 Tl µé 2 µ 7 É µ µ, ÊΠɵ³ É µ É Êα 6 ɵ²Ð Ò ³ Ï µ ²Ö² Ó Î Ö µ µ Ö ÔÉ Ì µ- ɵ µ Ì ³µ ÉÓ µé µ³ ÊÕÐ Ô (ËÊ ±Í Ö µ Ê Ö). ± Ö µí Ê Ò² µ²ó µ ²Ö µ ² Ö ËÊ ±Í µ Ê- Ö 210 µ, µ ÊÕÐ µ Ö ±Í 206 b( 6 He, 2n) 210 µ.. 4 É ² Ò Ô± ³ É ²Ó Ò Ê²ÓÉ ÉÒ µ ³ Õ ËÊ ±Í µ Ê Ö ± ²µ ±Í Au 203 xn Tl c Ê - ± ³ x É µ µ µ É µ µ Ö. ² µ²êî ÒÌ ÒÌ µ-. 4. ± ³ É ²Ó Ò Ê²ÓÉ ÉÒ µ ³ Õ ËÊ ±Í µ Ê Ö ± ²µ ±Í 197 Au xn Tl c ³ x É µ µ (µé 2 µ 7) µ É µ µ Ö 203 Tl ( Å2n, Å3n, Å4n, Å5n, Å6n, Å7n). ²µÏ Ò ² - Å Î ÉÒ µ²ó µ ³ ±µ ALICE-MP [15, 16] ³ É ³ µé Í ² ³µ É Ö r 0 =1,29˳,V = Ä67 ŒÔ d =0,4˳;B cä ±Ê²µ µ ± Ó ±Í Au µ ² Ö µ²ó µ ³ ±µ ALICE-MP [15, 16]. Î Ö ³ É µ Ò² ÖÉÒ ² Ô± ³ É ²Ó ÒÌ ÒÌ µ Î Ö³ É ²Ó- ÒÌ ±Í, Ò Ò ³ÒÌ ÉÖ ²Ò³ µ ³ µ ² É Ì ÉÖ ²ÒÌ Ö. ʲÓÉ ÉÒ Î Éµ Ò Ê ± ²µÏ Ò³ ± Ò³. ˆ. 4 µ, Îɵ Ô± ³ É ²Ó Ò Ò µ Î Ö³ ±Í Ê µ ² - É µ É ²Ó µ µ ² ÊÕÉ Ö É µ É Î ± ³ ± Ò³ µ ² É ³ ± ³Ê³µ ËÊ ±Í µ Ê Ö xn-± ²µ. Î Ö ËÊ ±Í Ö µ Ê Ö ±Í 6

9 Ê ± ³ ÊÌ É µ µ, ±µéµ µ µ Ê É Ö Ö µ 201 Tl, µ ² - ÊÕÉ Ö ± ³ µ ³µ ². Î É Ò Î Ö µ± ² Ó - ³ É µ ³ ÓÏ Ô± ³ É ²Ó ÒÌ Ê²ÓÉ Éµ. ɵ ³µ É ÒÉÓ Ö µ É ³, Îɵ ±Í Ö µ² µ µ µ ²µÐ Ö Ö 6 Ö µ³ 197 Au ³ É Î Q- ±Í, µ 12,2 ŒÔ, Îɵ ² É ±Í Õ ³ ÊÌ É µ- µ ²Ê µ±µ µ Ó µ. Ôɵ³ ²ÊÎ Î ÉÒ Î, ±µéµ ÒÌ ² Ö µ Ò É Ö µ ± µ ³ 6 Î Ó, ³µ ÊÉ µ ÉÓ ± - Ò³ Î Ö³. ²µ Î Ö ÉÊ Í Ö µ ± É ²Ö ±Í 206 Pb( 6 He, 2n) 210 Po (. 5)., Ôɵ³ ²ÊÎ Î Q- ±Í µ 4,2 ŒÔ, Îɵ µ² µ µ ÉÓ ± ±µ²ó±µ o²óï ³ Î Ö³ Î Ö.. 5. Ê ±Í Ö µ Ê Ö ±Í 206 Pb( 6 He, 2n) 210 Po. Å Ô± ³ É ²Ó Ò Î Ö Î µ µ Ö 210 Po; ÏÉ Ìµ Ö ± Ö Å Î ÉÒ ËÊ ±Í µ Ê- Ö ±Í µ É É É Î ±µ ³µ ² ; ²µÏ Ö ± Ö Å Ê²ÓÉ ÉÒ Î Éµ Î µ µ Ö 210 Po µ ÊÌ ÉÊ Î Éµ ³µ ² ² Ö Ö, ÊÎ ÉÒ ÕÐ µ- Í µ ² µ É ²Ó µ Î É µ µ [17]; B c Å ±Ê²µ µ ± Ó Éµ µé² Î µé Πɵ µ µ µ µ É ² µ. 5 ËÊ ±Í µ Ê Ö ±Í 206 Pb( 6 He, 2n) 210 Po. Î Ôɵ ±Í ³ ± ³Ê³ µµé É É Î É ³ µ É É É Î ±µ ³µ ² ( ³. ÏÉ - ̵ ÊÕ ± ÊÕ) µ² µ ÒÉÓ ³ ²µ, É ± ± ± ³ ± ³Ê³ µ²µ Ô ÖÌ ±Ê²µ µ ±µ µ Ó. ±µ É ² ÒÌ Ôɵ³ - Ê ± Ô± ³ É ²Ó ÒÌ ÒÌ µ, Îɵ Ô Î É Í 6 He 7 ŒÔ ±Ê²µ µ ±µ µ Ó ±Í 206 Pb + 6 He Î µ µ Ö 210 Po Å µ 汃 µ ² Ö µ É µ µ Ö ÊÌ É µ µ Å µ- É ²Ö É ³ É µ Î 10 ³. ± ³ µ µ³, ²Õ Ö ±Í ³ ÊÌ É µ µ µ Ó µ µ ² É, É ± ËÊ ±Í µ Ê Ö ÔÉ Ì ±Í ³Ò ³µ ³ ±µ É É µ ÉÓ, Îɵ ²Õ É Ö ÊÐ - 7

10 É µ Ê ² Î Î ±Í ² Ö Ö Ö 197 Au 206 Pb Ö ³ 6 ² Ó µ. Ôɵ³ Ê ± µ± Ò Ê²ÓÉ ÉÒ Î Éµ - µöé µ É ² Ö Ö µ ÊÌ ÉÊ Î Éµ ³µ ² ² Ö Ö [17]. Ôɵ ³µ ² µ² É Ö, Îɵ µ ̵ É µ ² µ É ²Ó Ö Î É µ µ Ö 6 Ö Ê ³ Ï. Ôɵ³ Ô Ö µ Ê Ö Ö µ É ³Ò µ É É ² Î Ê E ³ + Q gg, Îɵ ÊÐ É µ ÒÏ É Ô Õ ±Ê²µ µ ±µ µ Ó µ É ± µ ± µ Õ µ ² ³ ÔÉ α-î É ÍÒ Î Ó. µ ² Ô± ³ É ²Ó ÒÌ ÒÌ µ Î Ö³ ±Í 206 Pb( 6 He, 2n) 210 Po Î É Ò³ É ²Ó É Ê É µ ɵ³, Îɵ µí µ ² µ É ²Ó µ Î É µ µ ²Ö ² µ Ö ÒÌ Ö, µ- ³µ³Ê, Ö ²Ö É Ö µ µ - Ò³ Ë ±Éµ µ³, ² ÖÕÐ ³ µöé µ ÉÓ ² Ö Ö Pb Ê ² Î - ÕÐ ³ Î ±Í ²Ê µ±µ µ Ó µ µ ² É.. 6 É ² Ò ³µ É Î É ²Ó ÒÌ µ É É±µ ²Ö ±Í 197 Au( 6, 2n) 201 Tl 206 Pb( 6 He, 2n) 210 Po ± ± ËÊ ±Í Ö µé µé µï ³µ ÉÓ Î µ µ Ö É ²Ó ÒÌ µ É É±µ ²Ö ±Í 197 Au( 6, 2n) 201 Tl ( É²Ò ± Ê ± ) 206 Pb( 6 He, 2n) 210 Po (É ³ Ò ± ÉÒ) ± ± ËÊ ±Í Ö µé µï Ö Ô 6 É ³ Í É ³ ± Ô ±Ê²µ µ ±µ µ - Ó (E ³/B c) Ö Ô 6 É ³ Í É ³ (E ³ ) ± Ô ±Ê²µ µ ±µ µ Ó (B c ). µ µ ² 2n- É ²Ó ÒÌ ± ²µ ²Ö µ Ì ±Í Î - ɵ³ µ²µ µ ³ Ì ³ µ ² µ É ²Ó µ µ ² Ö Ö.. 7 É ² Ò ³ Ò ³ ËÊ ±Í µ Ê Ö ±Í µ µ ³ µéµ µ µ²µé 196 Au, 198 Au 199 Au µ µ µ³ µ ÉµÖ ³µ É 6 Ö ³ 197 Au. ˆ µ²êî ÒÌ ÒÌ ² Ê É, Îɵ ² Ó ²Õ É Ö Ò µ± Ö µöé µ ÉÓ µ µ Ö Ôɵ³ ³µ- É Ö 198 Au (σ 1 ). Š µ ² Õ, ɵÖÐ ³ Ô± ³ É 8

11 . 7. ˆ ³ Ò ËÊ ±Í µ Ê Ö µ µ Ö µéµ µ 196 Au, 198 Au 199 Au ±Í 197 Au Ê ±Í Ö µ Ê Ö ²Ö µ² ÒÌ Î ±Í ² Ö Ö: 197 Au + 6 ( ŠɵÖÐ Ô± ³ É; ÏÉ Ì Ê ±É Ö ± Ö Å Î É µ ³µ ² Ö- ÒÌ ± ²µ ; ÏÉ Ìµ Ö ± Ö Å ² µ µ³ µ µ Ó [18]) 206 Pb + 6 He ( ŠɵÖÐ Ô± ³ É; ²µÏ Ö ± Ö Å Î É, ÊÎ ÉÒ ÕÐ ÎÊ É µ µ 6 µ ² ÊÕÐ ² Ö µ É É± 4 Ö µ³ ³ Ï [17]) ³µ É µé µé µï Ö E ³/B c Ò²µ ³ µ Î µ µ Ö 198 Au Ô ±Ê²µ µ ±µ µ Ó ( 20 ŒÔ ). Œ Ê É ³ Ò µ± Ö µöé µ ÉÓ µ µ Ö µ ʱ- 9

12 ɵ, ³ É ÊÕÐ Ì ±Í Î µ µ µ É µ Ö Ê ³ Ï ² Ó, ³µ É µ ÑÖ ÉÓ ²Õ Ï Ö µé Ì [6, 7] ÔËË ±É µ- ÒÏ µ µöé µ É µ Ó µ µ ² Ö ±Í 238 U+ 6. ² Ê É É ± ³ É ÉÓ, Îɵ Ï Ì Ô± ³ É Ì ²Õ ² Ö µé µ - É ²Ó µ ± Ò̵ µéµ 199 Au, ±µéµ Ò ³µ³ ² ³µ É Ê± Ò ÉÓ Éµ²Ó±µ ³ ²µ ² µ µ µ µ µ ÉµÖ Ö Ôɵ µ Ö Î ÊÌ É µ µ.. 8 É ² ËÊ ±Í Ö µ Ê Ö ²Ö µ² µ µ Î Ö ±- Í ² Ö Ö ³µ É µé µé µï Ö E ³ /B c, µ²êî Ö Ê³³ µ ³ ³ ÒÌ ÉµÖÐ µé Ò̵ µ É ²Ó ÒÌ µ ʱɵ ±Í. Ê ± Πɱµ µ Î É ²Ó µ Ê ² Î Î Ö ² Ö Ö 206 Pb + 6 µ Ó µ µ ² É Ô 6. Š ˆ ɵÖÐ µé É ² Ò Ê²ÓÉ ÉÒ ÒÌ Ô± ³ ɵ Ê ±µ É ²Ó µ³ ±µ³ ² ± DRIBs. ÔÉ Ì Ô± ³ É Ì É µ ÉÓ Êα 6 µ É ²Ö² ² ÊÕÐ ³ Í ±² Ô± ³ ɵ µ² ÒÉÓ ÊÐ É µ Ê ² Î É µ ÉÓ µ ±É µ µ Êα 6 µ ŒÒ µ² ³ É ²Ó µ ² µ ÉÓ µ ËÊ ±Í µ Ê- Ö 1n- 2n- É ²Ó ÒÌ ±Í ³µ É 6 Ö ³ 206 Pb 197 Au ²Ê µ±µ µ Ó µ µ ² É Ô, É ³ ³ ÉÓ µ²- Ò Î Ö ±Í Î Ö ±Í Î µ µ µ ÊÌ É µ µ µ±µ²µ Ó µ µ ² É Ô. ɵ, µ- ³µ³Ê, É µ ³µ µ ÉÓ µ±µ - Î É ²Ó µ µ ÖÉÓ ³ Ì ³ ³µ É Ö 6 Ö ³ ² ±Ê²µ µ ±µ µ Ó. ±²ÕΠɵ Ò Ò ÕÉ ² µ µ ÉÓ ±µ²² ±É Ê µé ² Ê ±µ - É ² µ ² ƒ. ƒ. ƒê²ó ±Ö µ³ µ²óïêõ µéê µ Ê ±Ê Ê ±µ É ²Ó- µ µ ±µ³ ² ± DRIBs µ²êî Õ Êα 6. ŒÒ ² µ Ò Œ. ƒ. ˆÉ± Ê,.. ³ É Ê µ ±Ê Ôɵ µéò. ˆ. Ê µ É ² - Î É ÒÌ ÒÌ µ Î Ö³ ±Í ² Ö Ö µ² Ò ±Ê µí Ò µ² Ö ÉµÖÐ µéò. ɵÖÐ Ö µé Ò² Ò µ² µ ± ɵ INTAS º ˆ º , É ± ɵ µ² µ³µî ÒÌ É É ² Ï ±µ Ê ² ±, Ê ² ± µ²óï Ê ² ± µ² ˆŸˆ. ˆ 1. Fomichev A. S. et al. // Z. Phys. A V P. 129; Penionzhkevich Yu. E. et al. // Nucl. Phys. A V P

13 2. Hussein M. S. et al. // Phys. Rev. C V. 46. P. 377; Nucl. Phys. A V P. 85c. 3. Dasso C. et al. // Nucl. Phys. A V P Stelson P. H. // Phys. Rev. C V. 41. P Kolata J. J. et al. // Phys. Rev. Lett V. 81, No. 21. P Trotta M. et al. // Phys. Rev. Lett V. 84, No. 11. P Raabe R., Sida J. L., Trotta M., et al. // Nature V P Pietro A. Di. et al. // Phys. Rev. C V. 69. P Navin A. et al. // Phys. Rev. C V. 70. P Oganessian Yu. Ts., Gulbekian G. G. // Proc. of the Int. Conf. Nuclear Shells Å 50 Years, Dubna, Russia, 1999 / Eds. Oganessian Yu.Ts., von Oertzen W. and Kalpakchieva R. World Scientiˇc, Singapore, P Kuznetsov V. D. et al. // Scientiˇc report FLNR 2001Ä2002 / Ed. Popeko A. G. Dubna: JINR, P. 223 and Astabatyan R. A. et al. // Scientiˇc report FLNR 2001Ä2002 / Ed. Popeko A. G. Dubna: JINR, P. 212; Scientiˇc report FLNR 2003Ä2004 / Ed. Popeko A. G. Dubna: JINR, Skobelev N. K. et al. // Nucl. Instr. Meth. B V P ŒÊ Òα.., Ê ÉÒ²Ó ±. ˆ. // Ê Ò Œ Ê. ϱµ²Ò- ³ µ Ë ± ÉÖ ²ÒÌ µ µ ( ²ÊÏÉ, 1983). Ê : ˆŸˆ, µ ± Î... // Ÿ , º Zagrebaev V. I. // Phys. Rev. C V. 67. P (R); Progr. Theor. Phys. Suppl V P µ²êî µ 13 Õ²Ö 2005.

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