Measurement of 26Al(d,p)27Al to constrain the 26Al(p,gamma) reaction rate

Physics – Nuclear Physics

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Scientific paper

The galactic mapping of the 1809-keV γ ray from the beta decay of ^26Al has provided an insight into ongoing galactic nucleosynthesis. Understanding the abundance of ^26Al requires knowledge of rate of destruction of ^26Al, partially via the ^26Al(p,γ)^27Si reaction, which is determined by states near the proton threshold in ^27Si. Due to the difficulty of measuring these resonances directly, an alternative is to measure mirror states in ^27Al to inform the ^27Si structure. The spectroscopic strengths of a few known mirror states are the dominant sources uncertainty in the ^26Al(p,γ)^27Si reaction rate. The ^26Al(d,p)^27Al reaction has been measured in inverse kinematics at the HRIBF. A beam of ˜5 million ^26Al per second impinged on a ˜150 μg/cm^2 CD2 target. Proton ejectiles were detected in the SIDAR and ORRUBA silicon detector arrays. Details of the experimental setup and data analysis will be presented.

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