霍尔C杰斐逊实验室钨酸铅量热计的新型光电倍增管有源碱

V. Popov, H. Mkrtchyan
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引用次数: 5

摘要

设计并测试了一种新型光电倍增管有源底座。底座结合有源分压电路和快速放大器,由流过分压器的电流供电。该底座是为了升级Jefferson实验室铅钨量热计(PrimEx实验装置中约1200个PbWO4晶体)的旧光电倍增管底座而开发的。这是为了扩展探测器的速率能力,以满足新的Hall C提案PR12-11-102的要求,即在中性介子p(e,e′π0)p深不相容和p(e,e′0)X半包容散射区测量LIT分离截面及其比值R = αL/αT。新的有源基极是直接取代旧的无源基极电路而不增加额外的电源或信号线。然而,它将检测器的速率能力扩展了20倍以上。此外,晶体管分压器由于减少了光电倍增管增益对管阳极电流的依赖,提高了探测器的幅度分辨率。PMT活性碱基是V. Popov的美国专利No. 6,791,269中披露的发明,它在杰弗逊实验室的几个切伦科夫探测器上成功地工作了十年。下面的设计是一个新的修改和改进的电子电路,具有更好的增益稳定性和线性度,以满足新的C大厅实验装置的要求。利用快速LED光源、Pr:LuAG闪烁体和伽玛光源对新型有源碱的性能进行了测试。在JLab加速器上测试了电子辐射硬度。介绍了R4125滨松光电倍增管在新型有源底座上的测试结果。
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New photomultiplier active base for Hall C jefferson lab lead tungstate calorimeter
A new photomultiplier tube active base was designed and tested. The base combines active voltage division circuit and fast amplifier, powered by the current flowing through voltage divider. This base is developed to upgrade older photomultiplier bases of Jefferson Lab lead-tungsten calorimeter (about ~1200 crystals of PbWO4 from the PrimEx experimental setup). This is needed for the extension of detectors' rate capability to meet requirements of new Hall C proposal PR12-11-102 of measurements of the LIT separated cross sections and their ratio R = αL/αT in neutral-pion p(e,e'π0)p deep exclusive and p(e,e'no)X semi-inclusive scattering regions. New active base is direct replacement of older passive base circuit without adding of additional power or signal lines. However, it extends detectors rate capability with factor over 20. Moreover, transistorized voltage divider improves detector's amplitude resolution due to reduction of photomultiplier gain dependence from tube anode current. The PMT active base is the invention disclosed in V. Popov's U.S. Patent No. 6,791,269, which successfully works over ten years in several Jefferson Lab Cherenkov detectors. The following design is a new revised and improved electronic circuit with better gain stability and linearity in challenge to meet requirements of new Hall C experimental setup. New active base performance was tested using fast LED light source and Pr:LuAG scintillator and gamma sources. Electronics radiation hardness was tested on JLab accelerator. Results of testing R4125 Hamamatsu photomultiplier tube in new active base are presented.
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