Extension of the particle x-ray coincidence technique: The lifetimes and branching ratios apparatus

Fuente: arXiv
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Sun, L. J., Dopfer, J., Adams, A., Wrede, C., Banerjee, A., Brown, B. A., Chen, J., Jensen, E. A. M., Mahajan, R., Rauscher, T., Sumithrarachchi, C., Weghorn, L. E., Weisshaar, D., Wheeler, T.
Format: Preprint
Veröffentlicht: 2024
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866915302394036224
author Sun, L. J.
Dopfer, J.
Adams, A.
Wrede, C.
Banerjee, A.
Brown, B. A.
Chen, J.
Jensen, E. A. M.
Mahajan, R.
Rauscher, T.
Sumithrarachchi, C.
Weghorn, L. E.
Weisshaar, D.
Wheeler, T.
author_facet Sun, L. J.
Dopfer, J.
Adams, A.
Wrede, C.
Banerjee, A.
Brown, B. A.
Chen, J.
Jensen, E. A. M.
Mahajan, R.
Rauscher, T.
Sumithrarachchi, C.
Weghorn, L. E.
Weisshaar, D.
Wheeler, T.
contents The particle x-ray coincidence technique (PXCT) was originally developed to measure average lifetimes in the $10^{-17}-10^{-15}$~s range for proton-unbound states populated by electron capture (EC). We have designed and built the Lifetimes and Branching Ratios Apparatus (LIBRA) to be used in the stopped-beam area at the Facility for Rare Isotope Beams that extends PXCT to measure lifetimes and decay branching ratios of resonances populated by EC/$β^+$ decay. The first application of LIBRA aims to obtain essential nuclear data from $^{60}$Ga EC/$β^+$ decay to constrain the thermonuclear rates of the $^{59}$Cu$(p,γ)^{60}$Zn and $^{59}$Cu$(p,α)^{56}$Ni reactions, and in turn, the strength of the NiCu nucleosynthesis cycle, which is predicted to significantly impact the modeling of type I x-ray burst light curves and the composition of the burst ashes. Detailed theoretical calculations, Monte Carlo simulations, and performance tests with radioactive sources have been conducted to validate the feasibility of employing LIBRA for the $^{60}$Ga experiment. LIBRA can be utilized to measure most essential ingredients needed for charged-particle reaction rate calculations in a single experiment, in the absence of direct measurements, which are often impractical for radioactive reactants.
format Preprint
id arxiv_https___arxiv_org_abs_2410_16446
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Extension of the particle x-ray coincidence technique: The lifetimes and branching ratios apparatus
Sun, L. J.
Dopfer, J.
Adams, A.
Wrede, C.
Banerjee, A.
Brown, B. A.
Chen, J.
Jensen, E. A. M.
Mahajan, R.
Rauscher, T.
Sumithrarachchi, C.
Weghorn, L. E.
Weisshaar, D.
Wheeler, T.
Instrumentation and Detectors
Instrumentation and Methods for Astrophysics
Nuclear Experiment
The particle x-ray coincidence technique (PXCT) was originally developed to measure average lifetimes in the $10^{-17}-10^{-15}$~s range for proton-unbound states populated by electron capture (EC). We have designed and built the Lifetimes and Branching Ratios Apparatus (LIBRA) to be used in the stopped-beam area at the Facility for Rare Isotope Beams that extends PXCT to measure lifetimes and decay branching ratios of resonances populated by EC/$β^+$ decay. The first application of LIBRA aims to obtain essential nuclear data from $^{60}$Ga EC/$β^+$ decay to constrain the thermonuclear rates of the $^{59}$Cu$(p,γ)^{60}$Zn and $^{59}$Cu$(p,α)^{56}$Ni reactions, and in turn, the strength of the NiCu nucleosynthesis cycle, which is predicted to significantly impact the modeling of type I x-ray burst light curves and the composition of the burst ashes. Detailed theoretical calculations, Monte Carlo simulations, and performance tests with radioactive sources have been conducted to validate the feasibility of employing LIBRA for the $^{60}$Ga experiment. LIBRA can be utilized to measure most essential ingredients needed for charged-particle reaction rate calculations in a single experiment, in the absence of direct measurements, which are often impractical for radioactive reactants.
title Extension of the particle x-ray coincidence technique: The lifetimes and branching ratios apparatus
topic Instrumentation and Detectors
Instrumentation and Methods for Astrophysics
Nuclear Experiment
url https://arxiv.org/abs/2410.16446