Improvement of Compact X-Rays Source Using Uniaxially Polarized LiNbO3 Single Crystal

Author:

Guan Yang1,Fukao Shinji1,Ito Kazuyuki1,Nakanishi Yoshikazu1,Sato Yuuki1,Ito Yoshiaki2,Yoshikado Shinzo1

Affiliation:

1. Doshisha University

2. Kyoto University

Abstract

X-ray radiation using pyroelectric crystal is intermittent and the X-ray intensity is low and unstable compared with a conventional X-ray radiation method, such as X-ray tube. It is expected that the X-ray intensity becomes stable if electric field intensity and supply of electron are stable. In this study, to use X-ray radiation equipment as an electron source, tandem-type X-ray radiation equipment which is composed of two LiNbO3 single crystals polarized in a z-axis is proposed. When the temperature gradient for each crystal was the same, the X-ray intensity became approximately 6 times higher at a maximum. When the temperature gradient for each crystal was reversed, the period of X-ray radiation became approximately two times longer and the X-ray intensity became approximately 20 times higher at a maximum. Moreover, the stability of X-ray radiation for the repetition of temperature could be improved.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference3 articles.

1. J. D. Brownridge et al.: Trends in Lasers and Electro-Optics Research (Nova Science Publishers, New York 2006).

2. S. Fukao et al.: Mater. Res. Soc. Proc. Vol. 1034 (2008), 1034-K11-11.

3. S. Fukao et al.: AIP Conf. Proc. Vol. 1099 (2009), p.88.

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