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Nuclear-matter distributions of halo nuclei from elastic proton scattering in inverse kinematics

机译:逆运动学中基于质子弹性散射的晕核原子物质分布

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摘要

Proton-nucleus elastic scattering at intermediate energies, a well-established method for probing nuclear-matter density distributions of stable nuclei, was applied for the first time to exotic nuclei. This method is demonstrated to be an effective means for obtaining accurate and detailed information on the size and radial shape of halo nuclei. Absolute differential cross-sections for small-angle scattering were measured at energies near 700 MeV/u for the neutron-rich helium isotopes ~6He and ~8He, and more recently for the lithium isotopes ~6Li, ~8Li, ~9Li and ~(11)Li, using He and Li beams provided by the fragment separator FRS at GSI Darmstadt. Experiments were performed in inverse kinematics using the hydrogen-filled ionization chamber IKAR which served simultaneously as target and recoil-proton detector. For deducing nuclear-matter distributions, differential cross-sections calculatee with the aid of the Glauber multiple-scattering theory, using various parametrizations for the nucleon density distributions as input, were fitted to the experimental cross-sections. The results on nuclear-matter radii and matter distributions are presented, and the significance of the data for a halo structure is discussed. Nuclear-matter distributions obtained for ~6He and ~8He conform with the concept that both nuclei compose of α-particle like cores and significant neutron halos. The matter distribution in ~(11)Li exhibits, as expected from previous reaction cross-section studies with nuclear targets, the by far most extended halo component of all nuclei being investigated. In addition the present data allow a quantitative comparison of the structure of the He and Li isobares of either the mass number A=6 or A=8. The measured differential cross-sections have also been used for probing density distributions as predicted from various microscopic calculations. A few examples are presented.
机译:中等能量的质子-核弹性散射是一种用于探测稳定核的核物质密度分布的成熟方法,该方法首次应用于外来核。事实证明,该方法是获得有关晕核尺寸和径向形状的准确和详细信息的有效手段。对于富含中子的氦同位素〜6He和〜8He,最近的锂同位素〜6Li,〜8Li,〜9Li和〜(),在700 MeV / u的能量附近测量了小角度散射的绝对微分截面。 11)Li,使用GSI Darmstadt的碎片分离器FRS提供的He和Li光束。使用充氢的电离室IKAR进行反向运动学实验,该室同时用作目标和反冲质子探测器。为了推导核物质分布,借助于格劳伯多重散射理论,使用各种参数化方法将核子密度分布作为输入,计算出了不同的横截面。介绍了核物质半径和物质分布的结果,并讨论了数据对于光晕结构的重要性。 〜6He和〜8He获得的核物质分布符合这样的概念,即原子核都由像核一样的α粒子和大量中子晕组成。正如先前对核靶标进行的反应截面研究所预期的那样,〜(11)Li中的物质分布显示出正在研究的所有原子核中扩展最广的卤素成分。此外,本数据允许定量比较质量数为A = 6或A = 8的He和Li等压线的结构。测得的不同横截面也已用于探测密度分布,这是根据各种微观计算得出的。给出了一些例子。

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