Characterization of the Rod-Pinch Diode X-Ray Source on Cygnus

Abstract

The rod-pinch diode is a self-magnetically insulated electron beam diode that is capable of producing a very bright source of hard x-rays. As fielded on the Cygnus accelerator, the diode operates at an impedance of 50 Ohms and produces short pulse (approximately 50 ns) bremsstrahlung radiation with a 2 MeV photon endpoint energy and dose of 4 rad measured at one meter, with an x-ray spot size approximately 1mm. The source can be used to image through approximately 40 g/cm2 of material with spatial resolution of order 300 m. Recently, a series of experiments on Cygnus have been conducted to better characterize the diode's operation and x-ray output. In particular, the x-ray spectral content, source spot-size, and shot-to-shot reproducibility have been diagnosed. The intent of these experiments is to enable improvements that may extend the diode's radiographic utility. An array of diagnostics have been utilized which include, end-on and side view x-ray pin hole imaging, time resolved and time integrated spot size measurements, step wedges, x-ray p-i-n diodes, and diode/MITL current measurements. High fidelity, PIC/Monte-Carlo simulations have also been conducted to help analyze the data. An overview of these experiments, simulations, and the conclusions from analysis is presented.

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Document Details

Document Type
Technical Report
Publication Date
Jun 01, 2009
Accession Number
ADA630267

Entities

People

  • B. V. Oliver
  • D. Crain
  • D. Droemer
  • D. Hinshelwod
  • G. Cooperstein
  • M. Berninger
  • Nicole King
  • S. Cordova
  • S. Lutz
  • T. Haines

Organizations

  • Sandia National Laboratories

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Bremsstrahlung
  • Charged Particles
  • Dose Rate
  • Electron Beams
  • Electrons
  • Impedance
  • Materials
  • Measurement
  • Monte Carlo Method
  • Particle Beams
  • Pulsed Power
  • Radiation
  • Simulations
  • Spectra
  • Transmission Lines
  • Two Dimensional
  • X Rays

Fields of Study

  • Physics

Readers

  • Electrical Engineering
  • Pulsed Power and Plasma Physics.

Technology Areas

  • Directed Energy
  • Directed Energy - Lasers
  • Microelectronics