Ó³ Ÿ , º 4Ä5(174Ä175).. 576Ä585 ˆ ˆŠ ˆ ˆŠ Š ˆ. .. ŠÊ Íμ, ˆ.. Œ ϱμ,.. ² μ. Ñ Ò É ÉÊÉ Ö ÒÌ ² μ, Ê

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1 Ó³ Ÿ , º 4Ä5(174Ä175).. 576Ä585 ˆ ˆŠ ˆ ˆŠ Š ˆ ˆ ˆ Ÿ Š Œ ˆ ˆŸ ˆ ˆ Ÿ ˆ Œ Š ƒ ˆŸ.. ŠÊ Íμ, ˆ.. Œ ϱμ,.. ² μ Ñ Ò É ÉÊÉ Ö ÒÌ ² μ, Ê μ±² É ² μ μ Ô± ³ É ²Ó ÒÌ ÒÌ ±μ μ É Í μ μ ±μ³ - Í Ö (μé ² Ö μ Ê ) ² Î ÒÌ μ μ ³μ É Ô² ±É μ Ò³ ÊÎ±μ³ É ³ Ì Ô² ±É μ μ μ μì² Ö. ʲÓÉ É ² Ô± ³ É ²Ó ÒÌ ÒÌ μ²êî ³μ ÉÓ ±μ μ É Í μ μ ±μ³ Í μé μé μ É ²Ó μ Ô Ô² ±É μ μ, ±μéμ Ö ÊÐ É μ μé² Î É Ö μé É μ É - Î ± Ì ³μ ², μ²êî ÒÌ Š ³ μ³ ÊÌμ³. Š μ³ Éμ μ, μ± μ, ÎÉμ Ô± ³ É ±μ μ ÉÓ Í μ μ ±μ³ Í Ö É μé μ Î μ Ô Ô² ±É μ μ ± ± T 0,82, ÎÉμ É ± μé² Î μ μé ʲÓÉ Éμ Î Éμ μ μ É μ É Î ±μ ³μ ², ²μ μ Œ. ²². ²²μ³. μ ² μ Ò Ô± ³ É ²Ó Ò Ò μ μì² Õ μ μ μ³ ÊÉμÎ ÒÌ Ö μ- ÒÌ μ ÉμÖ, μ± ³μ ÉÓ ±μ μ É Í μ μ ±μ³ Í μé Ö μ μ μ μ- ÉμÖ Ö μ (±μ Ë Ê Í Ô² ±É μ μ μ μ²μî± ). ²Ö ±μéμ ÒÌ Ö μ ÒÌ μ ÉμÖ μ μ ±μ μ ÉÓ μí ³ É μ Ò Ì ±É. ²Ö Êαμ μ μ Au 32+,Au 33+,Au 50+ Au 51+ Ò μí ± μé Ó, μ Ê ²μ ² ÒÌ μ- Í μ³ Í μ μ ±μ³ Í É ³ Ô² ±É μ μ μ μì² Ö Ê É NICA. μ - ² μ Ò μ Î Ö ³ Êα Ö Au 79+, Ò Ò μí μ³ Í μ μ ±μ³ Í É ³ Ô² ±É μ μ μ μì² Ö ±μ²² NICA. ² ÕÉ Ö μ ³μ μ É Ê³ ÓÏ Ö ±μ μ É Í μ μ ±μ³ Í Ö Ò μ μ³ ³ É μ É ³Ò Ô² ±É μ - μ μ μì² Ö ±μ²² NICA. An overview of experimental data of radiative recombination (RR) rate of nuclei (from helium to uranium) and various intermediate charge states of ions in electron coolers is presented in the report. The ˇt of RR rates energy dependence on the cooling electron energy shift is found. This dependence is signiˇcantly different from that one presented in theoretical works of H. Kramers and R. Schuch. It was found also that bare nuclei RR rates depend on transverse electron energy as T 0.82, which differs from theoretical result obtained by M. Bell and J. Bell. Analysis of the experimental data for cooled heavy ions in intermediate charge state shows a RR critical dependence on the ion charge state (electron conˇguration of ion shells). Particularly, for certain charge states RR rate increases essentially having a resonance character. The estimations of RR rate losses of the Au 32+,Au 33+,Au 50+ and Au 51+ ion beams in the electron cooler of the NICA Booster are presented. The limitation of Au 79+ nuclei lifetime by RR process in the electron cooler of the Collider NICA is analyzed and measures of its increasing are opposed. PACS: Lx

2 Í μ Ö ±μ³ Í Ö μ μ Ö É ³ Ì Ô² ±É μ μ μ μì² Ö 577 ˆ ˆ μ²ó μ ³ Éμ μ Ô² ±É μ μ μ μì² Ö ÉÖ ²ÒÌ μ μ Ê É Ö ±μ²² Ê ±μ É ²Ó μ μ ±μ³ ² ± NICA μ Ìμ ³μ ²Ö μ²êî Ö μ ±É μ É ³μ É [1]. μ ² μ μí ± ³ μ μ μé [2Ä4] μí Í μ μ ±μ³- Í μ μ μì² ÕÐ Ì Ô² ±É μ Ì ³μ É ÊÐ É μ ² ÖÉÓ μé Êα Ê É ±μ²² NICA. μôéμ³ê ² Ô± ³ É ²Ó ÒÌ ÒÌ Í ²ÓÕ μ- ± É μ É Î ± Ì ³μ ² Î É ±μ μ É Í μ μ ±μ³ Í ³ É ±- É Î ± μ Î. ÉμÖÐ μé É ±μ Ò²μ μ μ μ μ Ô± ³ É ²Ó ÒÌ Ê²ÓÉ Éμ μé [5Ä17]. 1. Š Œ ˆ ˆŸ Ÿ ˆ Š Å ˆƒ ƒˆˆ Š μé Ì [5Ä11] ² μ ² Ó ³μ ÉÓ ±μ μ É Í μ μ ±μ³ Í Ö μé μé μ É ²Ó μ Ô Ô² ±É μ μ ΔE (. 1). ² Ô± ³ É ²Ó μ ³μ É ±μ μ É Í μ μ ±μ³ Í α fitted Z Z 1 Ö U92+ [5], Bi 83+ [6], Ar 18+ [7], Cl 17+ [8], Si 14+ [9], Ne 10+ [10], N 7+ [9], C 6+ [11] He 2+ [9] É ³ Ì Ô² ±- É μ μ μ μì² Ö μ± Ò É, ÎÉμ ³μ ÉÓ α fitted Z Z 1 (ΔE) ³μ É ÒÉÓ Ìμ μï ÉμÎ μ ÉÓÕ μ± ³ μ Ëμ ³Ê²μ ( ) 3/8 ΔE + α fitted Z Z 1 (ΔE) =a 1Z 2 b1. (1) Ry Ó α fitted Z Z 1 (ΔE) Å μ± ³ Í Ö ±μ μ É Í μ μ ±μ³ Í ³3 / ; Z Å Ö μμé É É ÊÕÐ Ì Ö ; ΔE Å μé μ É ²Ó Ö Ô Ö Ô² ±É μ μ É ³ Ö Ô ; a 1 =2, ³ 3 / b 1 = Ô Å ³ É Ò μ± ³ Í ; Ry = 13,6 Ô Å μ ÉμÖ Ö. ± ³ É ²Ó Ò Ò, Ò. 1, Î É Ò ² ÊÕÐ ³ μ μ³: Î Ö μ μ μ É Ê³ μ Ò μé μï ZU 2 /Z Ö 2, Î Ö μ μ Í ΔE =ΔE ² /γ Z. Š ± ³Ò ³, Î É Ò É ± ³ μ μ³ Ô± ³ É ²Ó Ò Ò ²Ö μ²óï É Ö Ìμ μïμ μ Ò ÕÉ Ö Ëμ ³Ê²μ (1) μ ³ μ Î ΔE. ɲ Î Ö ³ ÕÉ Ö: ²Ö Ö C 6+ ΔE >0,01 Ô (. 1, ) Ö Ar 18+ (. 1, ) μ ³ μ ΔE ( μ ², μ- ³μ³Ê, Ö μ Ò μ±μ ÉμÎ μ ÉÓÕ ³ ).. 1 μ± Ò É ± ʲÓÉ ÉÒ Î Éμ μ Ëμ ³Ê² ³ Š ³ [2] ÊÌ [3] ²Ö Î Ö n max =4Z U (n max Å Ì ² ʳ³ μ Ö μ ± Éμ Ò³ μ- ÉμÖ Ö³ Ëμ ³Ê² Ì Š ³ ÊÌ ). É ± Ò ³ É μ μé² Î ÕÉ Ö μé Ô± - ³ É ²Ó ÒÌ ÒÌ μ ² É ΔE <1 Ô, μ ² ÕÉ ÊÐ É μ ³ ÓÏ Î Ö ±μ μ É Í μ μ ±μ³ Í. ʲÓÉ É μ μ μ ² ³μ μ ±²ÕÎ ÉÓ, ÎÉμ ³μ ÉÓ (1) ³ ³ ±μ ³ ÉÖ ²Ò³ Ö ³. μé Ì [5] [6] ² μ ³μ ÉÓ ±μ μ É Í μ μ ±μ³ Í Ö U 92+ Bi 83+ μé ² Î Ò μ μ²ó μ μ ³ É μ μ μ²ö É ³ Ô² ±É μ μ μ μì² Ö Ö (. 2). ² Î ÔÉμ ³μ É μ² Î É ²Ó ΔE < 0,1 Ô ³ ² ΔE >0,1 Ô.

3 578 ŠÊ Íμ.., Œ Ï±μ ˆ.., ² μ ± ³ É ²Ó Ò Î Ö ±μ μ É Í μ μ ±μ³ Í Ö Ì É μ É Î ± ³ Î É ³ : ± Ê ±, É Ê μ²ó ±, ± ÉÒ Å Ô± ³ É: ) He 2+ [9], C 6+ [11], ) N 7+ [9], Ne 10+ [10], ) Si 14+ [9], Cl 17+ [8], Ar 18+ [7], ) Bi 83+ [6], U 92+ [5], ²μÏ Ö ± Ö Å É μ É Î ± μí ± μ Š ³ Ê [2], ÏÉ Ì Ê ±É Ö Å Éμ μ ÊÌÊ [3], ÏÉ Ìμ Ö Å ± Ö μ± ³ Í (1)

4 Í μ Ö ±μ³ Í Ö μ μ Ö É ³ Ì Ô² ±É μ μ μ μì² Ö ±μ μ ÉÓ Í μ μ ±μ³ Í Ö U 92+ ³μ É μé ΔE, ³ Ö Î ÉÒ Ì Î ÖÌ ² Î Ò ÊÐ μ ³ É μ μ μ²ö [5] É ³μ ÉÓ Ö, μ- ³μ³Ê, É ³, ÎÉμ μ É ± Ô² ±É μ μ Êϱ, μ Ê- μ μ μ²ó μ ³ É μ μ², ÎÊ É É ²Ó ± ² Î μ²ö (É ± Ò ³Ò ÔËË ±É μ μ μ É ± [18]). ʲÓÉ É ³ μ²ö ± Ò É Ö É ³- ÉÊ Ô² ±É μ μ μ Êα. 2. Š Œ ˆ ˆŸ ˆ, Ÿ ˆ Ÿ Œ Œ Ÿ Œ Ÿ ˆˆ. 3 Ò Ô± ³ É ²Ó Ò ³μ É ±μ μ É Í μ μ - ±μ³ Í ² Î ÒÌ μ μ ³μ É μé μ² Ö Ì Ô² ±É μ ÒÌ μ μ²μî ±, ³ Ò μ É ³ ²Ó μ³ μ ±μ μ É μì² Ö ³. ² μ± Ò É, ÎÉμ ±μ μ É Í μ μ ±μ³ Í μ²óï É μ μ ² ± ± ±μ μ ÉÖ³ Í μ μ ±μ³ Í Ì Ö. ±μ Ê ±μéμ ÒÌ μ μ ÔÉ ±μ μ É μîé μ Ö μ± ÒÏ Å ±μ³ Í Ö μ É μ Ò Ì ±É.. 3. ± ³ É ²Ó Ò ±μ μ É Í μ μ ±μ³ Í μ μ μ²μé [12] [13], Í [13] [14], ³ÊÉ [13] Ê [13] Ö μ ÒÌ μ ÉμÖ ÖÌ N e Ô² ±É μ ³. ƒμ - μ É ²Ó Ò ² μμé É É ÊÕÉ ±μ μ ÉÖ³ Í μ μ ±μ³ Í Ö μμé É É ÊÕÐ Ì μ μ

5 580 ŠÊ Íμ.., Œ Ï±μ ˆ.., ² μ.. ÔÉμ³ μ ³ É É Ö μ ² Ö ±μ μ³ μ ÉÓ: μ Ö ±μ³ Í Ö ³ É ³ Éμ, ± ± ²μ, Ê μ μ, μ Ï μ μ²μî± ±μéμ ÒÌ μ É É μ μ μ Ô² ±É μ : N e =29Å Au 50+ ([Ar]4s 1 3d 10 ) Pb 53+ ([Ar]4s 1 3d 10 ), N e =17Å Pb 65+ ([Ne]3s 2 3p 5 ), Bi 66+ ([Ne]3s 2 3p 5 ) U 75+ ([Ne]3s 2 3p 5 )., ÉÓ μé±²μ Ö μé ÔÉμ μ ² ( μ Ò Ì ±É μé ÊÉ É Ê É), ³ μ: N e =17Å Au 62+ ([Ne]3s 2 3p 5 ). μ É É ÊÌ Ô² ±É μ μ : N e =16Å Au 63+ ([Ne]3s 2 3p 4 ) U 76+ ([Ne]3s 2 3p 4 ), μé±²μ ³ ( μ Ò Ì ±É μé ÊÉ É Ê É) μé ÔÉμ μ ² Ö ²ÖÕÉ Ö μ É É É Ì Ô² ±É μ μ : N e =16Å Pb 66+ ([Ne]3s 2 3p 4 ) Bi 67+ ([Ne]3s 2 3p 4 ). N e =15Å Au 64+ ([Ne]3s 2 3p 3 ), Ó μé±²μ ³ ( μ Ò Ì ±É μé ÊÉ É Ê É) μé ÔÉμ μ ² Ö ²ÖÕÉ Ö N e =15Å Pb 67+ ([Ne]3s 2 3p 3 ), Bi 68+ ([Ne]3s 2 3p 3 ), U 77+ ([Ne]3s 2 3p 3 ). ± ³ μ μ³, ±μ μ É Í μ μ ±μ³ Í ² Î ÒÌ μ μ ÊÐ É μ, μ μ μ Î μ, ÖÉ μé Ì ±É μ² Ö Ì Ô² ±É μ ÒÌ μ μ²μî ±.. 4 Ô± ³ É ²Ó Ö ³μ ÉÓ ±μ μ É ±μ³ Í μé μé- μ É ²Ó μ Ô Ô² ±É μ μ ΔE ²Ö μ μ U 28+ ([Xe]6s 2 4f 7 5d 1 ) [14] É ± Ö ³μ ÉÓ ²Ö Ö U 92+, Î É Ö μ Ëμ ³Ê² (1) ( ³.. 1, ). ɳ É ³, ÎÉμ μ U 28+ ([Xe]6s 2 4f 7 5d 1 ) ³ É μ Ô² ±É μ μ μ²μî± 5d. Š ± ³, μ - ³μ É Ìμ μïμ μ ÕÉ.. 4. ±μ μ ÉÓ Í μ μ ±μ³ Í μ μ U 28+ ([Xe]6s 2 4f 7 5d 1 ) [14] ± Ö μ±- ³ Í (1) (ÏÉ Ìμ Ö ± Ö)

6 Í μ Ö ±μ³ Í Ö μ μ Ö É ³ Ì Ô² ±É μ μ μ μì² Ö ± ³ É ²Ó Ö ³μ ÉÓ μé ΔE ±μ μ É Í μ μ ±μ³ Í μ μ Au 25+ [16], Au 49+,Au 50+,Au 51+ [12], Pb 51+,Pb 52+,Pb 53+ [14] ± Ö μ± ³ Í (1) ²Ö Ö Au 79+ ( ²μÏ Ö ± Ö). ²Ö Ö Ê ±É μ ± μ μ± Ò Ê²ÓÉ ÉÒ, Î - É Ò μ Ëμ ³Ê² (1), ʳ μ μ 10. Ìμ μïμ μ± ³ ÊÕÉ ±μ μ ÉÓ Í μ μ ±μ³ Í μ μ Au 25+ [16] Au 50+ [12] ²μ Î Ò Ô± ³ É ²Ó Ò ³μ É Ö μ μ μ²μé Ò. 5. ²μÏ Ö ± Ö μéμ É Ö μ Ò μ²μé μ Ëμ ³Ê² (1), μ - ² μ. 4, Ê ±É Ö ± Ö ÒÏ É ²μÏ ÊÕ 10 Ìμ μïμ μ±- ³ Ê É ±μ μ ÉÓ Í μ μ ±μ³ Í μ μ Au 25+ ([Kr]5s 2 4d 10 5p 6 ) [16] Au 50+ ([Ar]4s 1 3d 10 ) [12]. Š ± μ. 5, ±μ μ É Í μ μ ±μ³ Í ²Ö μ μ Au 25+ Au 50+ μ ³ μ ΔE ÊÐ É μ ÒÏ, Î ³ ²Ö Ö Au 79+, ²Ö μ μ Au 49+ ΔE > 0,01 Ô. Ó, μî μ, μö ²Ö É Ö μ Ò Ì É Ô² ±É μ μ, μ - ²Ö ³Ò μ μ μ ÉÖ³ ±μ Ë Ê Í Ô² ±É μ ÒÌ μ μ²μî ± ÔÉ Ì μ μ. ±μ μ ÉÓ ±μ³ Í ²Ö μ μ Au 51+ ±μ²ó±μ ³μ É (1) ΔE >0,001 Ô. ˆ ² ÒÌ. 3, 4 5 μ, ÎÉμ ²Ö μ μ, Ìμ ÖÐ Ì Ö μ³ ÊÉμÎ μ³ Ö μ μ³ μ ÉμÖ, ±μ μ ÉÓ ±μ³ Í ³μ É ÒÉÓ ³ ±μ³ Í Ö ² μ Ìμ ÉÓ ²μÉÓ μ μ Ö ±. 3. Š Œ ˆ ˆŸ Ÿ Å ˆ ˆŒ œ Œ (ESR Š ˆŒ ) Ô± ³ É Ê É μ ± ESR [17] ²Ö Ö U 92+ Ô 400 ŒÔ / ʱ². ΔE =0 μ Î ÊÕ ±μ μ ÉÓ Ô² ±É μ μ μ Ê ² É É Î ± ³ μ Î Ò³ Ô² ±- É Î ± ³ μ² ³ E ±μ³ Í μ μ²ó Ò³ ³ É Ò³ μ² ³ B 0, É μ É - ÊÕÐ ³ Ô² ±É μ Ò ÊÎμ±. Éμ μ ²μ ± Õ Ô² ±É μ μ Í ±²μ ²Ó μ É ±Éμ. μ² E μ É Ö Ê³Ö Ô² ±É μ ³ ² μ l =5 ³ ( μ²μ ± Í - ², μ μ μ μ μ ÊÕÐ ³ ³ É μ³ d =10 ³). μ² B ³ ² μ ² ³μ μ ±μ ² Ô² ±É μ μ Ô 220 ±Ô λ 10 ³, ÎÉμ μ- É ³ É μ³ Í ² d μ μ²óï μ μéö μ É l. μôéμ³ê

7 582 ŠÊ Íμ.., Œ Ï±μ ˆ.., ² μ.. Ô² ±É μ μ ÊΠɱ μ²ö ³ Ê Ê³Ö Ô² ±É μ ³ Ê É μ² É Î ± ³, ÎÉμ μ É ± μ Ê Õ Ì μ Î μ ±μ μ É V : V = E B 0, E = U d, T = 2γ2 m e V 2 k B. (2) Ó V Å ±μ μ ÉÓ Ô² ±É μ μ ³/ ; U Å Ö Ô² ±É μ Ì ; γ Å ²μ Í-Ë ±Éμ Ö U 92+ ; m e Å ³ Ô² ±É μ ; B 0 Å ³ É μ μ² ƒ ; k B =1, Ô /Ô Å μ ÉμÖ Ö μ²óí³.. 6 Ò Ê²ÓÉ ÉÒ Ô± ³ É [17] μ ³ Õ ±μ μ É Í μ μ ±μ³ Í Ö U 92+ ÊÌ ³μ ÉÖÌ: Å Ìμ Ò Ò, ³μ ÉÓ μé Ö Ö U, Å μ μé Ò ³μ É μé T (2), ÖÉμ ± Î É É ³- ÉÊ Ò Ô² ±É μ μ.. 6. ʲÓÉ ÉÒ Ô± ³ É [17] μ ³ Õ Ô 400 ŒÔ / ʱ². ±μ μ É - Í μ μ ±μ³ Í Ö U 92+ : ) ³μ ÉÓ μé Ö Ö U Ô² ±É μ Ì [17]; ) - ³μ ÉÓ μé T (2) (ÏÉ Ì Ê ±É Ö ± Ö Å μ± ³ ÊÕÐ Ö ³μ ÉÓ μ Ëμ ³Ê² (3))

8 Í μ Ö ±μ³ Í Ö μ μ Ö É ³ Ì Ô² ±É μ μ μ μì² Ö 583 ³μ ÉÓ ±μ μ É Í μ μ ±μ³ Í. 6, Ìμ μïμ μ± ³ - Ê É Ö Ëμ ³Ê²μ ( ) c2 α fitted ESR = a 2ZU 2 T + b 2. (3) Ry Ó a 2 =1, ³ 3 / b 2 =0,2 Ô, c 2 =0,82 Å ³ É Ò μ± ³ Í ; Ry = 13,6 Ô Å μ ÉμÖ Ö ; Z U Å Ö Ö Ê. 4. Š NICA: Š Œ ˆ ˆ ˆ Ÿ Š ˆ œ ˆ ʲÓÉ ÉÒ ² Ô± ³ É ²Ó ÒÌ ÒÌ μ μ²öõé ² ÉÓ μí ± ³ Ö Au 79+ ±μ²² NICA Ò ÉÓ Ö μ Ò μ ÉμÖ Ö μ μ Au q+, μ É ³ ²Ó Ò ²Ö μì² Ö Ê É. ³Ö τq q 1 RR Î É Í Ö μ³ q ² μ Éμ μ É ³ ±μμ É, μ Ê ²μ- ² μ μí μ³ Ì Í μ μ ±μ³ Í É ³ Ô² ±É μ μ μ μì² Ö, μ ²Ö É Ö Ëμ ³Ê²μ τq q 1 RR γ 2 = α RR q q 1 n. (4) eη c Ó η c Å μé μï ² Ò ±Í Ô² ±É μ μ μ μì² Ö ± ³ É Ê Ê É μ ± ; n e Å ²μÉ μ ÉÓ Ô² ±É μ μ μ Êα ² μ Éμ μ É ³ μé Î É ; γ Å ²μ Í- Ë ±Éμ. ²Ö μí ± ³ Êα Ö Au 79+ É ³ Ô² ±É μ μ μ μì² - Ö ±μ²óí Ì ±μ²² NICA Ò (4) ² Î α RR q q 1 É ³ Êα Î É Í μ ²Ö É Ö: ³μ É μé ΔE Ëμ ³Ê²μ (1), ³μ É μé T Ëμ ³Ê²μ (3). ² ±É μ μ μì² Ö Au 79+ ±μ²² NICA Ê É μ²ó μ ÉÓ Ö Ô ÖÌ Êα Ö μ 1Ä4,5 ƒô / ʱ². (É ² Í ). ³ É Ò É ³ μì² Ö Ê É ±μ²² NICA ³ É Ò Ê É Šμ²² NICA Ö μ μ, ƒô / ʱ². 0,1 1Ä4,5 Ê Ô² ±É μ μ μ Êα, ³ 2,5 1 μ± Ô² ±É μ μ μ Êα, 1,0 0,5 η c 0,014 0,012 ²Ö μ ² Ö Í μ μ ±μ³ Í ±μ²² NICA Ò²μ μ μ ÔËË ±É μ É ÊÌ ³ Éμ μ Å Ô Ô² ±É μ μ ΔE (1) Ó - μ Ö μ Î μ É ³ ÉÊ Ò Ô² ±É μ μ μ Êα T (2). Í ± ³ Êα Ö Au 79+ ±μ²² NICA, μ μ Ò ² Ëμ ³Ê² (4), É ± (1) (3), É ² Ò. 7, 8, μμé É É ÊÕÐ Î Ö ³ μì² Ö τ cool Ò² Î É Ò μ²ó μ ³ Ëμ ³Ê²Ò, ²μ μ.. Ìμ³ÎÊ±μ³ [19].. 8 É ± ³μ ÉÓ ³ μé T, Î É Ö μ É μ- É Î ±μ Ëμ ³Ê² Œ. ²². ²² [4], ±μéμ Ö, ± ± μ, ÊÐ É μ μé² Î μé ʲÓÉ Éμ, μ²êî ÒÌ μ μ Ô± ³ É ²Ó ÒÌ ÒÌ [17]. Ê É μ² É Ö Ê ±μ ÊÌ É μ μ μ μ²μé : Au 33+ ([Kr]4d 10 ) Au 51+ ([Ar]4s 2 3d 8 ), ±μ μ É Í μ μ ±μ³ Í ±μéμ ÒÌ ³μ μ μí ÉÓ

9 584 ŠÊ Íμ.., Œ Ï±μ ˆ.., ² μ Î É Ò ³μ É μé ΔE ³ Êα Ö Au 79+ τ RR ³ μì² - Ö τ cool ±μ²² NICA ²Ö ² Î ÒÌ Ô μì² Ö. ³Ö ÊÉ Êαμ μ μ Ö Ö τ IBS = Î É Ò ³μ É μé T ³ Êα Ö Au 79+ τ RR ³ μì² - Ö τ cool ±μ²² NICA ²Ö ² Î ÒÌ Ô μì² Ö. ³Ö ÊÉ Êαμ μ μ Ö Ö τ IBS = 1300 μ μ ÒÌ. 5. ̲ Ê É μ Ìμ ÉÓ É Î 1 Ô μ μ μ Êα 100 ŒÔ / ʱ²., Ê ±μ Ö ³μ μ μ ² μì² Ö μ 600 ŒÔ / ʱ². μμé É É ÊÕ- Ð μí ± μé Ó Êαμ Au 33+ ([Kr]4d 10 ) Au 51+ ([Ar]4s 2 3d 8 ), μ Ê ²μ ² ÒÌ - Í μ μ ±μ³ Í Ê É, ÕÉ ² Î Ê ³ 2 % μ ³ μ ΔE. ²Ö μ μ Au 32+ ([Kr]5s 1 4d 10 ) Au 50+ ([Ar]4s 1 3d 10 ) ÉμÉ Ê μ Ó μé Ó Ê É ΔE >0,1 Ô. μ± μ, ÎÉμ Ô± ³ É ²Ó Ò Î Ö ±μ μ É Í μ μ ±μ³ Í Ö ÖÉ μé μé μ É ²Ó μ Ô Ô² ±É μ μ μ ±μ Ê α fitted Z Z 1 ΔE 3/8 (1), ÎÉμ ÊÐ É μ μé² Î μ μé μí μ± μ μ É μ É Î ± Ì ³μ ² [2] [3]. ΔE =0 ±μ μ ÉÓ Í μ μ ±μ³ Í Ö μ Ê μ Î μ É ³ ÉÊ Ò É μé ± ± α fitted Z Z 1 T 0,82 (3), ÎÉμ ÊÐ É μ μé² Î μ μé μí μ± μ μ É μ É Î ±μ ³μ ² [4].

10 Í μ Ö ±μ³ Í Ö μ μ Ö É ³ Ì Ô² ±É μ μ μ μì² Ö 585 ³Ö Êα Ö μ²μé É ³ Ô² ±É μ μ μ μì² Ö ³μ É ÒÉÓ Ê - ² Î μ Ê³Ö ³ Éμ ³ : μ μ μ³ μ É ³ ²Ó μ Ô μé É μ ± Ô² ±É μ μ μ Êα ΔE ² Ê ² Î ³ μ Ê Ö μ Î μ É ³ ÉÊ Ò Ô² ±É μ μ μ Êα T. Éμ μ ³ Éμ É ²Ö É Ö μ² μîé É ²Ó Ò³, É ± ± ± μ μ²ö É μ² ÔËË ±É μ μ ²ÖÉÓ ±μ μ ÉÓ Í μ μ ±μ³ Í. ±μ μ ÉÓ Í μ μ ±μ³ Í μ μ, Ìμ ÖÐ Ì Ö μ³ ÊÉμÎ μ³ Ö- μ μ³ μ ÉμÖ, Ê μé ²Ó ÒÌ μ μ ³ É μ Ò Ì ±É. μôéμ³ê ²Ö ³ - ³ Í μé Ó, μ Ê ²μ ² ÒÌ Ò³ μí μ³, ² Ê É Ò ÉÓ μ Ò μ² μ ÉÓÕ μ² μ Ô² ±É μ μ Ï μ μ²μî±μ ² μ Ð Î É μ Î ²μ Ô² ±É μ μ. ² μ μ É. Éμ Ò Ò ÕÉ ² μ μ ÉÓ A. O. μ Ê μ² Ò μ Ê Ö. ˆ Š ˆ 1. Kekelidze V. et al. NICA Project at JINR // Part. Nucl., Lett V. 9, No. 4(174Ä175). P. 521Ä Kramers H. A. // Phil. Mag V. 46. P Pajek Œ., Schuch R. // Phys. Rev V. 45, No. 11. P. 7894Ä Bell M., Bell J. S. // Part. Accel V. 12. P. 49Ä Shi W. et al. // Eur. Phys. J. D V. 15. P. 145Ä Hoffknecht A. et al. // Phys. Rev V. 63. P Uwira O. et al. // Hyp. Int V P. 167Ä Hoffknecht A. et al. // Phys. Scr V. T92. P. 402Ä Spies W. et al. // Hyp. Int V P. 237Ä Schuch R. et al. // Acta Phys. Polon. B V. 27, No. 1Ä2. P. 307Ä Andersen L. et al. // Phys. Rev. Lett V. 64. P. 729Ä Wolf A. et al. // Nucl. Instr. Meth. A V P. 183Ä Meshkov I. Ion Recombination in Electron Coolers // Working Meeting. CERN, Geneva, Private communication. 14. Baird S. et al. // Phys. Lett. B V. 361, No. 1Ä4. P. 184Ä Méuller A. et al. // Phys. Scr V. T37. P. 62Ä Hoffknecht A. et al. // HYINT V P. 257Ä Beller P. et al. // Nucl. Instr. Meth. A V P. 427Ä ŠÊ ². ˆ., Œ Ï±μ ˆ.., ² ³μ.. // , Ò. 11. C. 2294Ä Parkhomchuk V. V., Skrinskii A. N. // Phys. Usp V. 43, No. 5. P. 433Ä452.

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