CASCADE PROCESSES AND THE KINETIC-ENERGY DISTRIBUTION OF PIONIC HYDROGEN-ATOMS

被引:40
作者
ASCHENAUER, EC
GABATHULER, K
HAUSER, P
MISSIMER, J
BADERTSCHER, A
GOUDSMIT, PFA
LEISI, HJ
SCHRODER, HC
SIGG, D
ZHAO, ZG
CHATTELLARD, D
EGGER, JP
MARKUSHIN, VE
机构
[1] PAUL SCHERRER INST, CH-5232 VILLIGEN, SWITZERLAND
[2] ETH ZURICH, INST PARTICLE PHYS, CH-5232 VILLIGEN, SWITZERLAND
[3] UNIV NEUCHATEL, INST PHYS, CH-2000 NEUCHATEL, SWITZERLAND
[4] IV KURCHATOV ATOM ENERGY INST, RUSSIAN RES CTR, MOSCOW 123182, RUSSIA
来源
PHYSICAL REVIEW A | 1995年 / 51卷 / 03期
关键词
D O I
10.1103/PhysRevA.51.1965
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The previously unmeasured neutron time-of-flight distributions for the reaction π-p→π0n in gaseous targets at pressures of 17 and 40 bar have been measured. The kinetic energy of the π-p atoms at the instant of the nuclear reaction has been evaluated from the Doppler broadening of the neutron time-of-flight spectra. Evidence was found for π-p atoms with kinetic energies of 75 eV. The present experimental data were interpreted within a cascade model that takes the evolution of the kinetic-energy distribution during the cascade into account. The parameters of the model were determined from experiments measuring neutron time of flight in liquid hydrogen and x-ray yields in gas. Coulomb deexcitation is responsible for the significant fraction of the high-energy component, whose intensities are compatible with the calculations of Bracci and Fiorentini [Nuovo Cimento 43A, 9 (1978)]. Stark mixing is found to be significantly stronger than in the commonly used straight-line approximation; the initial mean kinetic energy of 1-2 eV is consistent with the results of muonic hydrogen. The model therefore describes the cascade of pionic hydrogen over a range of pressures of three orders of magnitude. The implications for high-resolution x-ray measurements of the 1S-level nuclear width are discussed. © 1995 The American Physical Society.
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页码:1965 / 1979
页数:15
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