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1)  charge exchange reaction
电荷交换反应
1.
In this paper is studied the antiproton-nucleus charge exchange reaction A (p-, n) B under the distorted wave impulse approximation.
本文研究在扭曲波冲量近似下,反质子与原子核的电荷交换反应A(p,n)B。
2.
Under the distorted wave impulse approximation, we discuss the antiprotonnucleus charge exchange reaction A B and the inelastic scattering ACalculations are presented for the differential cross sections of 12C 12B,18O 18N and 18O 18O at antiprotion energies 179.
在扭曲波冲量近似下,讨论了反质子与核的电荷交换反应A(p,n)B和非弹性散射A(p,p’)A。
2)  double charge exchange reaction
双电荷交换反应
1.
The double charge exchange reaction on 18~O(π+, π- )"Ne is analyzed by using theGlauber theory and the differential cross section at the region of the 6-resonance (Tπ =164 MeV) is calculated in a model which the 18O and 18Ne are assumed to consist of twovalence nucleons and a core of four a-particles.
应用Glauber理论,对(18)O(π~+,π~-)、(18)Ne双电荷交换反应进行分析,假定(18)O和(18)Ne由2价核子和4α核心组成,计算了共振区Tx=164MeV的微分截面。
3)  SCX reaction
单电荷交换反应
1.
The SCX reaction 13C (π+,π0)13N at Tx = 150 MeV and 165 MeV are analyzed by using the frame of the Glauber theory.
在Glauber理论框架下,对13C(π+,π0)13N单电荷交换反应(Tx=150MeV和165MeV)进行分析,核波函数假定由价核子和12C核心组成,核心部分以独立a集团模型描述。
4)  electron exchange reaction
电子交换反应
5)  Charge exchange
电荷交换
1.
Charge exchange effect of ion implantation to biomolecules;
离子注入生物分子的电荷交换效应
2.
In the operation of diode, when anode plasma is formed usually creates large quantities of cold neutrals, charge exchange condition of the cold neutrals and beam ions and charge exchange affect on space charge limited current densities are studied, hot neutrals created in charge exchange process expand into the A K gap and are ionized rapidly causing A K gap shorting.
研究了强流脉冲离子二极管中阳极等离子体中的冷中性粒子与束离子的电荷交换条件以及电荷交换作用对空间电荷限制电流密度的影响 ,电荷交换作用产生的热中性粒子快速充满二极管间隙 ,并被电离 ,可引起二极管间隙短
3.
The results showed that the charge exchange process in the interaction of H~+_2 ions with solids played a key role in the formation of these products.
实验表明,在各种产物的形成中电荷交换过程起着关键作用。
6)  exchange charge
交换电荷
补充资料:电荷交换离子化
分子式:
CAS号:

性质:通过电荷交换反应使试样分子离子化的过程。如在化学电离源内,反应气R先被电子电离化为离子R+,它与试样分子M发生电荷交换而使其离子化:               R++M→R+M+

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