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Dive into the research topics where M. Q. Buckner is active.

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Featured researches published by M. Q. Buckner.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2016

γ-Ray spectroscopy using a binned likelihood approach

John Dermigny; Christian Iliadis; M. Q. Buckner; K. J. Kelly

Abstract The measurement of a reaction cross section from a pulse height spectrum is a ubiquitous problem in experimental nuclear physics. In γ -ray spectroscopy, this is accomplished frequently by measuring the intensity of full-energy primary transition peaks and correcting the intensities for experimental artifacts, such as detection efficiencies and angular correlations. Implicit in this procedure is the assumption that full-energy peaks do not overlap with any secondary peaks, escape peaks, or environmental backgrounds. However, for complex γ -ray cascades, this is often not the case. Furthermore, this technique is difficult to adapt for coincidence spectroscopy, where intensities depend not only on the detection efficiency, but also the detailed decay scheme. We present a method that incorporates the intensities of the entire spectrum (e.g., primary and secondary transition peaks, escape peaks, Compton continua, etc.) into a statistical model, where the transition intensities and branching ratios can be determined using Bayesian statistical inference. This new method provides an elegant solution to the difficulties associated with analyzing coincidence spectra. We describe it in detail and examine its efficacy in the analysis of 18 O(p, γ ) 19 F and 25 Mg(p, γ ) 26 Al resonance data. For the 18 O(p, γ ) 19 F reaction, the measured branching ratios improve upon the literature values, with a factor of 3 reduction in the uncertainties.


Physical Review C | 2015

High-intensity-beam study of O 17 ( p , γ ) F 18 and thermonuclear reaction rates for O 17 + p

M. Q. Buckner; C. Iliadis; K. J. Kelly; Lori Downen; A. E. Champagne; J. M. Cesaratto; C. Howard; R. Longland


Physical Review C | 2013

Measurement of the e r c.m. = 138 keV resonance in the 23 Na(p, γ) 24 Mg reaction and the abundance of sodium in AGB stars

J. M. Cesaratto; Arthur E. Champagne; M. Q. Buckner; T. B. Clegg; S. Daigle; C. Howard; Christian Iliadis; Richard Longland; J. R. Newton; B. M. Oginni


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2010

Nuclear astrophysics studies at LENA: The accelerators

J. M. Cesaratto; Arthur E. Champagne; T.B. Clegg; M. Q. Buckner; R.C. Runkle; A. Stefan


Physical Review C | 2012

Thermonuclear reaction rate of 18 O( p , ? ) 19 F

M. Q. Buckner; C. Iliadis; J. M. Cesaratto; C. Howard; T. B. Clegg; A. E. Champagne; S. Daigle


Physical Review C | 2016

Measurement of the Erc.m.=259 keV resonance in the N14(p,γ)O15 reaction

S. Daigle; K. J. Kelly; A. E. Champagne; M. Q. Buckner; C. Iliadis; C. Howard


Physical Review C | 2015

New recommended ω γ for the E r c . m . = 458 keV resonance in Ne 22 ( p , γ ) Na 23

K. J. Kelly; A. E. Champagne; Richard Longland; M. Q. Buckner


Unknown Journal | 2012

Improved thermonuclear reaction rate for 18O(p,γ) 19F

M. Q. Buckner; C. Iliadis; J. M. Cesaratto; C. Howard; T. B. Clegg; A. E. Champagne; S. Daigle


Physical Review C | 2012

Thermonuclear reaction rate of18O(p,γ)19F

M. Q. Buckner; C. Iliadis; J. M. Cesaratto; C. Howard; T. B. Clegg; A. E. Champagne; S. Daigle


Physical Review C | 2012

Thermonuclear reaction rate of 18O(p,gamma)19F

M. Q. Buckner; T. B. Clegg; C. Iliadis; C. Howard; J. M. Cesaratto; A. E. Champagne; S. Daigle

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C. Howard

University of North Carolina at Chapel Hill

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J. M. Cesaratto

University of North Carolina at Chapel Hill

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A. E. Champagne

Oak Ridge National Laboratory

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S. Daigle

University of North Carolina at Chapel Hill

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T. B. Clegg

University of North Carolina at Chapel Hill

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K. J. Kelly

University of North Carolina at Chapel Hill

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Arthur E. Champagne

University of North Carolina at Chapel Hill

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Christian Iliadis

University of North Carolina at Chapel Hill

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Richard Longland

University of North Carolina at Chapel Hill

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