Department of Radiation Physics, The University of Texas MD Anderson Cancer Center, 1515 Holcombe Blvd, Houston, TX, USA.
Phys Med Biol. 2013 May 7;58(9):2955-67. doi: 10.1088/0031-9155/58/9/2955. Epub 2013 Apr 11.
We examined temperature dependence in plastic scintillation detectors (PSDs) made of BCF-60 or BCF-12 scintillating fiber coupled to optical fiber with cyanoacrylate. PSDs were subjected to a range of temperatures using a temperature-controlled water bath and irradiated at each temperature while either the dose was measured using a CCD camera or the spectral output was measured using a spectrometer. The spectrometer was used to examine the intensity and spectral distribution of scintillation light emitted by the PSDs, Cerenkov light generated within the PSD, and light transmitted through an isolated optical coupling. BCF-60 PSDs exhibited a 0.50% decrease and BCF-12 PSDs a 0.09% decrease in measured dose per °C increase, relative to dose measured at 22 °C. Spectrometry revealed that the total intensity of the light generated by BCF-60 and BCF-12 PSDs decreased by 0.32% and 0.13%, respectively, per °C increase. The spectral distribution of the light changed slightly with temperature for both PSDs, accounting for the disparity between the change in measured dose and total light output. The generation of Cerenkov light was temperature independent. However, light transmitted through optical coupling between the scintillator and the optical fiber also exhibited temperature dependence.
我们研究了用氰基丙烯酸酯将 BCF-60 或 BCF-12 闪烁光纤与光纤耦合制成的塑料闪烁探测器(PSD)的温度依赖性。PSD 被置于控温水浴中,在每个温度下进行照射,同时使用 CCD 相机测量剂量或使用光谱仪测量光谱输出。光谱仪用于检查 PSD 发出的闪烁光、PSD 内产生的切伦科夫光以及通过隔离光纤耦合传输的光的强度和光谱分布。与在 22°C 下测量的剂量相比,BCF-60 PSD 的剂量每升高 1°C 减少 0.50%,BCF-12 PSD 的剂量减少 0.09%。光谱分析表明,BCF-60 和 BCF-12 PSD 产生的光的总强度分别每升高 1°C 减少 0.32%和 0.13%。对于两种 PSD,光的光谱分布随温度略有变化,这解释了测量剂量和总光输出变化之间的差异。切伦科夫光的产生与温度无关。然而,闪烁体和光纤之间的光纤耦合传输的光也表现出温度依赖性。