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Dive into the research topics where Lucas Snyder is active.

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Featured researches published by Lucas Snyder.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2018

Performance of a MICROMEGAS-based TPC in a high-energy neutron beam

Lucas Snyder; B. Manning; N. S. Bowden; J. Bundgaard; R.J. Casperson; D. Cebra; Timothy Classen; Dana Duke; Joshua Gearhart; U. Greife; C. Hagmann; Michael Heffner; David Hensle; Daniel James Higgins; D. Isenhower; Jonathan B. King; Jennifer Lynn Klay; Verena Geppert-Kleinrath; W. Loveland; Joshua A. Magee; Michael P. Mendenhall; S. Sangiorgio; B. Seilhan; Kyle Thomas Schmitt; F. Tovesson; R. S. Towell; Nicholas Walsh; S. Watson; Liangyu Yao; Walid Younes

Abstract The MICROMEGAS (MICRO-MEsh GAseous Structure) charge amplification structure has found wide use in many detection applications, especially as a gain stage for the charge readout of Time Projection Chambers (TPCs). Here we report on the behavior of a MICROMEGAS TPC when operated in a high-energy (up to 800 MeV ) neutron beam. It is found that neutron-induced reactions can cause discharges in some drift gas mixtures that are stable in the absence of the neutron beam. The discharges result from recoil ions close to the MICROMEGAS that deposit high specific ionization density and have a limited diffusion time. For a binary drift gas, increasing the percentage of the molecular component (quench gas) relative to the noble component and operating at lower pressures generally improves stability.


Journal of Instrumentation | 2013

The NIFFTE project

J. Ruz; D. M. Asner; R.G. Baker; J. Bundgaard; Eric Burgett; Mark F. Cunningham; J. Deaven; D.L. Duke; U. Greife; S. M. Grimes; M. Heffner; Tony Hill; D. Isenhower; Jennifer Lynn Klay; V. Kleinrath; N. Kornilov; A. Laptev; W. Loveland; T. N. Massey; R. Meharchand; H. Qu; S. Sangiorgio; B. Seilhan; Lucas Snyder; Sean C. Stave; G. Tatishvili; R.T. Thornton; F. Tovesson; D. Towell; R. S. Towell

The Neutron Induced Fission Fragment Tracking Experiment (NIFFTE) is a double-sided Time Projection Chamber (TPC) with micromegas readout designed to measure the energy-dependent neutron-induced fission cross sections of the major and minor actinides with unprecedented accuracy. The NIFFTE project addresses the challenge of minimizing major sources of systematic uncertainties from previous fission chamber measurements such as: target and beam non-uniformities, misidentification of alpha and light charged particles as fission fragments, and uncertainties inherent to the reference standards used. In-beam tests of the NIFFTE TPC at the Los Alamos Neutron Science Center (LANSCE) started in 2010 and have continued in 2011, 2012 and 2013. An overview of the NIFFTE TPC status and performance at LANSCE will be presented.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2014

A Time Projection Chamber for High Accuracy and Precision Fission Cross Section Measurements

M. Heffner; D. M. Asner; Rich Baker; J. D. Baker; S. Barrett; C. R. Brune; J. Bundgaard; Eric Burgett; Darrell Carter; Mark F. Cunningham; Jenna Deaven; Dana Duke; U. Greife; S. M. Grimes; U. Hager; Nolan E. Hertel; Tony Hill; D. Isenhower; Keith Jewell; Jonathan B. King; Jenn Klay; Verena Kleinrath; N. Kornilov; R. Kudo; A. Laptev; Mary Leonard; W. Loveland; T. N. Massey; C. McGrath; R. Meharchand


EPJ Web of Conferences | 2013

SPIDER: A new instrument for fission fragment research at the Los Alamos Neutron Science Center

F. Tovesson; Charles Arnold; Rick Blakeley; A. A. Hecht; A. Laptev; Drew Mader; K. Meierbachtol; Lucas Snyder; Morgan C. White


Nuclear Data Sheets | 2014

Targets for Precision Measurements

W. Loveland; L. Yao; D. M. Asner; R.G. Baker; J. Bundgaard; Eric Burgett; Mark F. Cunningham; J. Deaven; D.L. Duke; U. Greife; S. M. Grimes; M. Heffner; Tony Hill; D. Isenhower; Jenn Klay; V. Kleinrath; N. Kornilov; A. Laptev; T. N. Massey; R. Meharchand; H. Qu; J. Ruz; S. Sangiorgio; B. Selhan; Lucas Snyder; Sean C. Stave; G. Tatishvili; R.T. Thornton; F. Tovesson; D. Towell


Nuclear Data Sheets | 2014

An Ethernet-based Data Acquisition System for the NIFFTE Time Projection Chamber

Lynn S. Wood; D. M. Asner; R.G. Baker; J. Bundgaard; Eric Burgett; Mark F. Cunningham; J. Deaven; D.L. Duke; U. Greife; S. M. Grimes; M. Heffner; Tony Hill; D. Isenhower; Jennifer Lynn Klay; V. Kleinrath; N. Kornilov; A. Laptev; W. Loveland; T. N. Massey; R. Meharchand; H. Qu; J. Ruz; S. Sangiorgio; B. Seilhan; Lucas Snyder; Sean C. Stave; G. Tatishvili; R.T. Thornton; F. Tovesson; D. Towell


Nuclear Data Sheets | 2014

The Data Analysis Framework for the NIFFTE Fission Time Projection Chamber

Sean C. Stave; D. M. Asner; R.G. Baker; J. Bundgaard; Eric Burgett; Mark F. Cunningham; J. Deaven; D.L. Duke; U. Greife; S. M. Grimes; M. Heffner; Tony Hill; D. Isenhower; Jennifer Lynn Klay; V. Kleinrath; N. Kornilov; A. Laptev; W. Loveland; T. N. Massey; R. Meharchand; H. Qu; J. Ruz; S. Sangiorgio; B. Seilhan; Lucas Snyder; G. Tatishvili; R.T. Thornton; F. Tovesson; D. Towell; R. S. Towell


Bulletin of the American Physical Society | 2016

Neutron Diagnostic Development for the Z Accelerator

Kelly Hahn; Gordon Andrew Chandler; C. L. Ruiz; B. Jones; M. R. Gomez; P. F. Knapp; Adam B Sefkow; Stephanie B. Hansen; Paul Schmit; Eric Harding; Edward Norris; J. Torres; G. W. Cooper; Jedediah Styron; J. A. Frenje; B. Lahmann; M. Gatu-Johnson; F. H. Séguin; R. D. Petrasso; D. N. Fittinghoff; M. J. May; Lucas Snyder; Ken Moy; R. Buckles; V. Yu. Glebov


Bulletin of the American Physical Society | 2016

Utilization of Neutron Bang-time CVD diamond detectors at the Z Accelerator

Gordon Andrew Chandler; Kelly Hahn; C. L. Ruiz; B. Jones; M. R. Gomez; Mark Hess; Eric Harding; P. F. Knapp; James A. Bur; J. Torres; Edward Norris; G. W. Cooper; Jedediah Styron; Ken Moy; Ian Mckenna; Vladimir Yu. Glebov; D. N. Fittinghoff; M. J. May; Lucas Snyder


Nuclear Data Sheets | 2014

Commissioning the NIFFTE Time Projection Chamber: Towards the 238U / 235U (n, f) Cross-section Ratio

R. Meharchand; D. M. Asner; R.G. Baker; J. Bundgaard; Eric Burgett; Mark F. Cunningham; J. Deaven; D.L. Duke; U. Greife; S. M. Grimes; M. Heffner; Tony Hill; D. Isenhower; Jennifer Lynn Klay; V. Kleinrath; N. Kornilov; A. Laptev; W. Loveland; T. N. Massey; H. Qu; J. Ruz; S. Sangiorgio; B. Seilhan; Lucas Snyder; Sean C. Stave; G. Tatishvili; R.T. Thornton; F. Tovesson; D. Towell; R. S. Towell

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A. Laptev

Los Alamos National Laboratory

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D. Isenhower

Abilene Christian University

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F. Tovesson

Los Alamos National Laboratory

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J. Bundgaard

Colorado School of Mines

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U. Greife

Ruhr University Bochum

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W. Loveland

Oregon State University

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D. M. Asner

Pacific Northwest National Laboratory

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M. Heffner

Lawrence Livermore National Laboratory

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Mark F. Cunningham

Lawrence Livermore National Laboratory

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