首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A new way of depositing thin targets of monolayer thickness for nuclear reaction analysis: A case of the 550 keV ~(13)C (p, γ)~(14)N resonant nuclear reaction
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A new way of depositing thin targets of monolayer thickness for nuclear reaction analysis: A case of the 550 keV ~(13)C (p, γ)~(14)N resonant nuclear reaction

机译:沉积单层厚度薄靶的新方法用于核反应分析:以550 keV〜(13)C(p,γ)〜(14)N共振核反应为例

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摘要

We suggest a method by which the thinnest possible uniform isotopic targets may be produced in favourable cases, by bonding a monolayer to a diamond substrate, for use in nuclear level studies at maximum energy resolution. The need to deconvolve the target thickness contribution, or concern about its possible non-uniformity, fall away. We illustrate with a new measurement of the proton energy width of the ~(13)C(p,γ)~(14)N resonance at 550 keV.
机译:我们建议一种方法,在有利的情况下,通过将单分子层结合到金刚石基底上,可以产生最薄的均匀同位素靶,用于以最大能量分辨率进行核能级研究。使目标厚度贡献反卷积的需要或对其可能的不均匀性的担忧逐渐消失。我们用550 keV下〜(13)C(p,γ)〜(14)N共振的质子能量宽度的新测量来说明。

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