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Charge-exchange reactions and nuclear matrix elements for β β decay.

机译:ββ衰减的电荷交换反应和核基质元素。

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Charge-exchange reactions of (n,p) and (p,n) type at intermediate energies are a powerful tool for the study of nuclear matrix element in ββ decay. The present paper reviews some of the most recent experiments in this context. Here, the (n,p) type reactions are realized through (d,~2He), where ~2He refers to two protons in a singlet ~1S_0 state and where both of these are momentum analyzed and detected by the same spectrometer and detector. These reactions have been developed and performed exclusively at KVI, Groningen (NL), using an incident deuteron energy of 183 MeV. Final state resolutions of about 100 keV have routinely been available. On the other hand, the (~3He,t) reaction is of (p,n) type and was developed at the RCNP facility in Osaka (JP). Measurements with an unprecedented high resolution of 30 keV at incident energies of 420 MeV are now readily possible. Using both reaction types one can extract the Gamow-Teller transition strengths B(GT~+) and fi(GT~-), which define the two 'legs"; of the ββ decay matrix elements for the 2νββ decay. The high resolution available in both reactions allows a detailed insight into the excitations of the intermediate odd-odd nuclei and,as will be shown, some unexpected features are being unveiled.
机译:(N,P)和(P,N)型在中间能量的电荷交换反应对核矩阵元素的在ββ衰变研究的强有力的工具。本文综述了一些在这方面最近的实验。在此,第(n,p)的类型的反应是通过(d,〜2HE),其中〜2HE指两个质子的单峰〜1S_0状态和两者都是动量分析,并用相同的光谱仪和检测器检测到的来实现。这些反应已经被开发并独家KVI,格罗宁根(NL)进行,使用183兆电子伏的入射能量氘核。约100千电子伏的最终状态决议常规可用。在另一方面,在(〜氦-3,t)的反应是(P,N)类型的,并且在大阪(JP)的RCNP设施的开发。与在420兆电子伏入射能量30keV的前所未有高分辨率测量现在是容易可行的。使用这两种反应类型一个可以提取伽莫夫 - 泰勒过渡强度B(GT〜+)和音响(GT〜 - ),它定义了两个“腿“;对于2νββ衰减ββ衰变矩阵元素的高的分辨率。在上述两个反应允许详细洞察中间奇奇核的激发和,如将要示出,一些意想不到的功能正在亮相。

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