Isotope-selective radiography and material assay using high-brilliance, quasi-monochromatic, high-energy photons

Author:

Jentschel Michael1ORCID,Albert Felicie2,Buslaps Thomas3,Friman-Gayer Udo4,Honkimaki Veijo3,Mertes Laura5,Pollitt Andrew J.1,Mutti Paolo1,Pietralla Norbert5,Barty C. P. J.67

Affiliation:

1. Institut Laue-Langevin

2. Lawrence Livermore National Laboratory

3. European Synchrotron Radiation Facility

4. Duke University and Triangle Universities Nuclear Laboratory

5. Technische Universität Darmstadt

6. University of California

7. Lumitron Technologies, Inc.

Abstract

We demonstrate the possibility to directly detect microgram amounts of the isotope 7 L i using a quasi-monochromatic high-energy photon beam. The isotope selective detection is based on a witness scatterer absorbing and re-emitting photons via nuclear resonance fluorescence. This enables the detection of isotopes with microgram accuracy at long distances from the actual sample. Further, we demonstrate that the technique can deliver quantitative information without specific knowledge of the photon flux and no spectral capabilities or knowledge of the resonance fluorescence cross section. Detection of low-atomic-weight isotopes screened by heavy shielding is also shown. The techniques described are applicable to all next-generation, ultrahigh brilliance, laser-Compton light sources currently under construction.

Funder

US Department of Energy

Deutsche Forschungsgemeinschaft

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Engineering (miscellaneous),Electrical and Electronic Engineering

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