Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5493184 | Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment | 2017 | 8 Pages |
Abstract
A common approach to studying β-delayed proton emission is to measure the energy of the emitted proton and corresponding nuclear recoil in a double-sided silicon-strip detector (DSSD) after implanting the β-delayed proton-emitting (βp) nucleus. However, in order to extract the proton-decay energy, the measured energy must be corrected for the additional energy implanted in the DSSD by the β-particle emitted from the βp nucleus, an effect referred to here as β-summing. We present an approach to determine an accurate correction for β-summing. Our method relies on the determination of the mean implantation depth of the βp nucleus within the DSSD by analyzing the shape of the total (proton + recoil + β) decay energy distribution shape. We validate this approach with other mean implantation depth measurement techniques that take advantage of energy deposition within DSSDs upstream and downstream of the implantation DSSD.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Instrumentation
Authors
Z. Meisel, M. del Santo, H.L. Crawford, R.H. Cyburt, G.F. Grinyer, C. Langer, F. Montes, H. Schatz, K. Smith,