论文标题

基于多硅氧烷的Shashlik量热计的闪光灯

Polysiloxane-based scintillators for shashlik calorimeters

论文作者

Acerbi, F., Branca, A., Brizzolari, C., Brunetti, G., Carturan, S., Catanesi, M. G., Cecchini, S., Cindolo, F., Collazuol, G., Corso, F. Dal, De Rosa, G., Delogu, C., Falcone, A., Gola, A., Jollet, C., Kliček, B., Kudenko, Y., Laveder, M., Longhin, A., Ludovici, L., Lutsenko, E., Magaletti, L., Mandrioli, G., Marchi, T., Margotti, A., Mascagna, V., Meregaglia, A., Mezzetto, M., Nessi, M., Pari, M., Parozzi, E., Pasqualini, L., Paternoster, G., Patrizii, L., Piemonte, C., Pozzato, M., Prest, M., Pupilli, F., Radicioni, E., Riccio, C., Ruggeri, A. C., Scian, C., Sirri, G., Stipčevic, M., Tenti, M., Terranova, F., Torti, M., Vallazza, E., Vesco, M.

论文摘要

我们介绍了基于多硅氧烷的闪光灯作为Shashlik采样量热仪中的活动介质的第一次应用。这些结果是从$ \ sim $ 6 $ \ times $ 6 $ \ times $ 45 cm $^3 $(13 $ x_0 $ depth)原型的Testbeam广告系列获得的。 36个元素的波长转移纤维阵列垂直于铁(15毫米)和多硅氧烷闪烁体(15毫米)瓷砖,密度约为cm $^2 $。与基于塑料有机闪光灯的Shashlik量热量器不同,此处的纤维与闪烁体在没有任何中间气隙的情况下将纤维匹配。该原型具有基于嵌入在大部分检测器中的硅光化器的紧凑光读数。测试探测器的电子,液体和muons的能量在CERN-PS处为1至7 GEV。该解决方案提供了高度辐射硬探测器来仪器中微子束的衰减区域,从而逐场测量与中微子产生相关的高角度衰减产物(Enubet,Kaon Tagging增强的中微子束,ERC Project)。将其在光产量,均匀性和能量分辨率方面的结果与使用普通塑料闪光灯建造的类似量热计进行了比较。

We present the first application of polysiloxane-based scintillators as active medium in a shashlik sampling calorimeter. These results were obtained from a testbeam campaign of a $\sim$6$\times$6$\times$45 cm$^3$ (13 $X_0$ depth) prototype. A Wavelength Shifting fiber array of 36 elements runs perpendicularly to the stack of iron (15 mm) and polysiloxane scintillator (15 mm) tiles with a density of about one over cm$^2$. Unlike shashlik calorimeters based on plastic organic scintillators, here fibers are optically matched with the scintillator without any intermediate air gap. The prototype features a compact light readout based on Silicon Photo-Multipliers embedded in the bulk of the detector. The detector was tested with electrons, pions and muons with energies ranging from 1 to 7 GeV at the CERN-PS. This solution offers a highly radiation hard detector to instrument the decay region of a neutrino beam, providing an event-by-event measurement of high-angle decay products associated with neutrino production (ENUBET, Enhanced NeUtrino BEams from kaon Tagging, ERC project). The results in terms of light yield, uniformity and energy resolution, are compared to a similar calorimeter built with ordinary plastic scintillators.

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