@inproceedings{0a65d83977824f729602544992a15367,
title = "Advanced non-destructive assessment technology to determine the aging of silicon containing materials for generation IV nuclear reactors",
abstract = "To create an in-situ, real-time method of monitoring neutron damage within a nuclear reactor core, irradiated silicon carbide samples are examined to correlate measurable variations in the material properties with neutron fluence levels experienced by the silicon carbide (SiC) during the irradiation process. The reaction by which phosphorus doping via thermal neutrons occurs in the silicon carbide samples is known to increase electron carrier density. A number of techniques are used to probe the properties of the SiC, including ultrasonic and Hall coefficient measurements, as well as high frequency impedance analysis. Gamma spectroscopy is also used to examine residual radioactivity resulting from irradiation activation of elements in the samples. Hall coefficient measurements produce the expected trend of increasing carrier concentration with higher fluence levels, while high frequency impedance analysis shows an increase in sample impedance with increasing fluence.",
keywords = "Nondestructive, Nuclear Reactor Sensor, Silicon Carbide, Transmutation",
author = "Koenig, \{T. W.\} and Olson, \{D. L.\} and B. Mishra and King, \{J. C.\} and J. Fletcher and L. Gerstenberger and S. Lawrence and A. Martin and C. Mejia and Meyer, \{M. K.\} and R. Kennedy and L. Hu and G. Kohse and J. Terry",
year = "2011",
doi = "10.1063/1.3592071",
language = "English",
isbn = "9780735408883",
series = "AIP Conference Proceedings",
pages = "1200--1207",
booktitle = "Review of Progress in Quantitative Nondestructive Evaluation",
note = "37th Annual Review of Progress in Quantitative Nondestructive Evaluation, QNDE ; Conference date: 18-07-2010 Through 23-07-2010",
}