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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Performance of Pixel-Readout Micro-Pixel Chamber with Analog-Readout System Used as X-ray Polarimeter
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Performance of Pixel-Readout Micro-Pixel Chamber with Analog-Readout System Used as X-ray Polarimeter

机译:具有X射线旋光仪的模拟读数系统的像素读数微像素腔的性能

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We developed an analog-readout system for a pixel-readout micro-pixel chamber (μ-PIC) to be used as an astronomical X-ray polarimeter, and demonstrated that the sensitivity of the new system reached up to that predicted by a simulation. A pixel-readout u-PIC is a micro-pattern gaseous detector with a fine position resolution and good stability at sufficient gain operation, and is suited for astronomical X-ray polarimetry. However, as shown by Katagiri et al. (2007), the sensitivity to X-ray polarization was found to be statistically lower by a significant amount than that expected from the simulation of Ueno et al. [Nucl. Instrum. Methods Phys. Res., Sect. A 525 (2004) 28] because of the readout system and background produced by the scattering of the X-ray beam in air. We therefore developed a new readout system and carried out a beam test with aluminum tubes that reduced the background. As a result, we demonstrated that for collimated beams, the modulation factors, which are indicators of the sensitivity to X-ray polarization, were 0.24 ± 0.08 at 8 keV and 0.18 ± 0.07 at 15 keV in a neon-based gas mixture, and 0.18 ±0.04 at 15keV in an argon-based mixture. These values are consistent with those predicted by the simulation within errors.
机译:我们开发了一种像素读取微像素腔(μ-PIC)的模拟读取系统,该系统可用作天文X射线旋光仪,并证明了新系统的灵敏度可以达到模拟预测的灵敏度。像素读出u-PIC是一种微模式气体检测器,具有良好的位置分辨率和在足够的增益操作下具有良好的稳定性,适用于天文X射线极化仪。但是,正如Katagiri等人所述。 (2007年),发现对X射线极化的敏感性在统计学上比Ueno等人的模拟预期的要低得多。 [核仁。仪器方法物理。 Res。,Sect。 525(2004)28],因为读出系统和背景是由于X射线束在空气中的散射而产生的。因此,我们开发了一种新的读数系统,并使用铝管进行了光束测试,以减少背景。结果,我们证明,对于准直光束,作为氖气混合气体,X射线偏振敏感度的指标调制因子在8 keV时为0.24±0.08,在15 keV时为0.18±0.07。在15keV的氩气基混合物中为0.18±0.04。这些值与误差范围内的仿真预测值一致。

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