The strong interaction shift and width of the ground state of pionic hydrogen

被引:58
作者
Sigg, D
Badertscher, A
Bogdan, M
Goudsmit, PFA
Leisi, HJ
Schroder, HC
Zhao, ZG
Chatellard, D
Egger, JP
Jeannet, E
Aschenauer, EC
Gabathuler, K
Simons, LM
ElHassani, AJR
机构
[1] ETH ZURICH, INST PARTICLE PHYS, CH-5232 VILLIGEN, SWITZERLAND
[2] PAUL SCHERRER INST, CH-5232 VILLIGEN, SWITZERLAND
[3] ECOLE MOHAMMADIA INGENIEURS, RABAT, MOROCCO
关键词
D O I
10.1016/S0375-9474(96)00280-1
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
The 3p-1s transition in pionic hydrogen was investigated with a high-resolution crystal spectrometer system. From the precisely measured transition energy, together with the (calculated) electromagnetic energy, the strong interaction shift of the 1s state was obtained as epsilon 1s = -7.127 +/- 0.028(stat.) +/- 0.036(syst.) eV (attractive). From the natural line width, measured for the first time, we determine the decay width of the 1s state: Gamma(1s)((decay)) = 0.97 +/- 0.10(stat.) +/- 0.05(syst.) eV. With the recently calculated electromagnetic corrections the s-wave scattering lengths of an isospin symmetric strong interaction are deduced. The scattering length for elastic scattering of a negative pion on a proton is a(pi-p-->pi-p)(h) = 0.0885 +/- 0.0003(stat.) +/- 0.0006(syst.)m(pi)(-1). The scattering length for single charge exchange is found to be a(pi-p-->pi 0n)(h) = -0.136 +/- 0.007(stat.) +/- 0.003(syst.)m(pi)(-1). The experiment was performed at the Paul Scherrer Institute (PSI) in Switzerland. A focussing crystal spectrometer with an array of bent crystals, the cyclotron trap (a magnetic system designed to increase the particle stop density) and a CCD (charge-coupled device) detector system were employed. The results from the pionic hydrogen experiment - together with those from the pionic deuterium experiment - were used to test the isospin symmetry of the strong interaction, The present data are still consistent with isospin symmetry.
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页码:269 / 309
页数:41
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