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A free-air ionization chamber with a large aperture diaphragm

机译:具有大孔径光阑的自由空气电离室

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摘要

Calculations of the electric field distributions in free-air ionization chambers reveal that the distortion of the charge collection volume is small even for wide X-ray beam passage if the diaphragm and the X-ray shielding box are kept at a potential equal to half that applied to the high-voltage electrode. Applying this potential to the diaphragm and the shielding box permits a larger aperture diaphragm to be used. This will allow a wider X-ray beam to enter the chamber, thus generating a larger signal. In addition, the distance between the diaphragm and the charge collection volume can be shortened to reduce the amount of X-ray attenuation. It is also possible to calibrate a dosimeter against a free-air ionization chamber that has a diaphragm whose aperture size is equal to the size of the dosimeter in an X-ray field that is collimated to the same size. This is important since free-air ionization chambers are not sensitive to X-rays that are incident at large angles, such as those scattered by the collimator, filters and air.
机译:对自由空气电离室中电场分布的计算表明,即使膜片和X射线屏蔽盒的电势保持等于X射线屏蔽盒的一半,即使对于宽X射线束通过,电荷收集体积的畸变也很小应用于高压电极。将这个电势施加到振动膜和屏蔽盒上,可以使用更大孔径的振动膜。这将允许更宽的X射线束进入腔室,从而生成更大的信号。另外,可以缩短隔膜和电荷收集体积之间的距离,以减少X射线衰减量。还可以针对具有隔膜的自由空气电离室校准剂量计,该隔膜的孔径大小等于在准直至相同大小的X射线场中剂量计的大小。这很重要,因为自由空气电离室对大角度入射的X射线不敏感,例如准直仪,过滤器和空气散射的X射线。

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