Author:
Takechi Seiji,Fujita Shogo,Konishi Naoki,Miyachi Takashi,Kobayashi Masanori,Okudaira Osamu,Okada Nagaya,Fujii Masayuki,Shibata Hiromi,Murakami Takeshi,Uchihori Yukio
Abstract
Abstract
The variation of the electromechanical coupling factor of lead zirconate titanate (PZT) was studied using a piezoelectric PZT disk exposed to a 400 MeV/n xenon beam. The resonant and antiresonant frequencies were measured in pairs by an impedance analyzer in situ manner. A systematic behavior of the pairs resulted in a decrease of the coupling factor. It was found that the coupling factor linearly decreased with increasing integrated beam energy incident on the PZT disk while its surface temperature was equilibrium at room temperature. We discuss a possible PZT-based radiation detector for practical use in a high-radiation field.
Subject
General Physics and Astronomy,Physics and Astronomy (miscellaneous),General Engineering
Cited by
3 articles.
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