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低能He^(2+)-He碰撞体系转移电离机理的实验研究 被引量:2

Experimental investigation of transfer ionization mechanism in slow He^(2+)-He collisions
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摘要 利用冷靶反冲离子动量谱仪,对低能He2+-He碰撞反应中产生的反冲靶离子和炮弹离子进行了符合测量,根据反冲靶离子的动量,研究了转移电离过程中的电荷转移机理.实验结果表明:在20—40keV能量范围内,靶原子上的一个电子俘获到炮弹离子的基态,另一个电子直接发射到靶的连续态的直接电离及另一个电子俘获到炮弹离子的连续态的过程(ECC)是最主要的转移电离机理,且ECC过程主要发生在大碰撞参数条件下;炮弹离子俘获两个电子处在双激发态的自电离过程的贡献很小. The processes of transfer ionization in He^2+-He collisions at energies ranging from 20 to 40 keV have been studied experimentally by means of cold target recoil ions momentum spectroscopy. From the longitudinal momentum spectra of recoil ions, different mechanisms of transfer ionization have been obtained. The results show that one of the electrons of helium atom being captured into the ground state of projectile ion He^2 + and the other one emitted to the continuum state of projectile or target are the dominant mechanisms of transfer ionization. The autoionization cross section of projectile after two-electron capture into a double excited state is small. Transfer ionization for one target electron capture into ground state and the other one into the continuum of projectile mainly occurs at large impact parameter collisions.
出处 《物理学报》 SCIE EI CAS CSCD 北大核心 2010年第1期620-624,共5页 Acta Physica Sinica
基金 国家自然科学基金重点项目(批准号:10434100 )资助的课题~~
关键词 冷靶反冲离子动量谱仪 转移电离机理 离子原子碰撞 COLTRIMS, transfer ionization mechanism, ion-atom collision
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  • 1Mergel V, Domer R, Ullfich J, Jagutzki O, Lencinas S, Nuttgens S, Spielberger L, Unverzagt M, Cooke C L, Olson R E, Schulz M, Buck U, Zanger E, Theisinger W, Isser M, Gels S, Schmidt- Bocklng H 1995 Phys. Rev. Lett. 74 2200.
  • 2Afrosimov V V, Leiko G A, Mamaev Yu A, Panov M N 1975 Soy. Phys. JETP 40 661.
  • 3Rudd M E, Goffe T V, Itoh A 1985 Phys. Rev. A 32 2128.
  • 4Dubois R D 1986 Phys. Rev. A 33 1595.
  • 5Dubois R D 1987 Phys. Rev. A 36 2585.
  • 6Shah M B, Mccallion P, Ginbody H B 1989 J. Phys. B: At. Mol. Opt. Phys. 22 3037.
  • 7Folkerts H O, Bliek F W, Meng L, Olson R E, Morgenstern R, Von Hellermann M V, Summers H P, Hoekstra R 1994 J. Phys. B: At. Mol. Opt. Phys. 27 3475.
  • 8Afrosimov V V, Basalaev A A, Leiko G. A, Panov M N 1978 Soy. Phys. JETP 47 837.
  • 9Fritsch W 1994 J. Phys. B: At. Mol. Opt. Phys. 27 3461.
  • 10Keever W C, Everhart E 1966 Phys. Rev. 150 43.

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同被引文献20

  • 1冯文天,马新文,刘惠萍,陈兰芳,李斌,曹士娉.电子成像均匀约束磁场的产生及测试分析[J].物理学报,2007,56(7):3637-3641. 被引量:5
  • 2朱小龙 马新文 李斌 刘惠萍 陈兰芳 张少锋 冯文天.物理学报,2008,58:2077-2077.
  • 3Ullrich J, Moshammer R, Dorn A, Derner R, Schmidt L Ph H, Schmidt-Becking H 2003 Rep. Prog. Phys. 66 1463.
  • 4All R, Frohne V, Cocke C L, Stockli M, Cheng S, Raphaelian L A 1992 Phys. Rev. Lett. 69 2491.
  • 5张少锋 马新文 刘惠萍 李斌 朱小龙.中国科学:G辑,36:456-456.
  • 6Domer R, Mergel V, Ali R, Buck U, Cocke C L, Froschauer K, Jagutzki O, Lencinas S, Meyerhof W E, Ntlttgens S, Olson R E, Schmidt-Bocking H, Spielberger L, Tokesi K, Ullrich J, Unverzagt M, Wu W 1994 Phys. Rev. Lett. 72 3166.
  • 7Mergel V, Dorner R, Ullrich J, Jagutzki O, Lencinas S, Ntlttgens S, Spielberger L, Unverzagt M, Cocke C L, Olson R E, Schulz M, Buck U, Zanger E, Theisinger W, Isser M, Gels S, Schmidt-B~cking H 1995 Phys. Rev. Lett. 74 2200.
  • 8Domer R, Mergel V, Spielberger L, Achier M, Khayyat Kh, Vogt T, Brauning H, Jagutzki O, Weber T, Ullrich J, Moshammer R, Unverzagt M, Schmitt W, Khemliche H, Prior M H, Cocke C L, Feagin J, Olson R E, Schmidt-Bscking H 1997 Nucl. Instr. and Meth. B 127 225.
  • 9Mergel V, Domer R, Achler M,Khayyat Kh, Lencinas S, Euler J, Jagutzki O, Nuttgens S, Unverzagt M, Spielberger L, Wu W, Ali R, Ullrich J, Cederquist H, Salin A, Wood C J, Olson R E, Belkic'Dz, Cooke C L, Schmidt-Bocking H 1997 Phys. Rev. Lett. 79 387.
  • 10Flechard X, Nguyen H, Wells E, Ben-Itzhak, Depaola B 2001 Phys. Rev. Lett. 87 123203.

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