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首页> 外文期刊>IEEE Transactions on Nuclear Science >New Start of Lead Tungstate Crystal Production for High-Energy Physics Experiments
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New Start of Lead Tungstate Crystal Production for High-Energy Physics Experiments

机译:用于高能物理实验的钨酸铅晶体新生产

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摘要

Presently, there is a demand to apply high-quality lead tungstate (, PWO) scintillation material for electromagnetic calorimetry (EMC). Unfortunately, the mass production of lead tungstate using the Czochralski method was stopped after shut down of Bogoroditsk Technological Chemical Plant (Bogoroditsk, Russia). CRYTUR (Turnov, Czech Republic) having long time experience and the necessary technology in the development and mass production of oxide crystals expressed their interest in meeting PWO requirements for the high-energy physics community. Last year the development of lead tungstate crystals was started by CRYTUR. Several series of samples were produced under different technical conditions. All test crystals are being characterized with respect to light yield, scintillation kinetics, photoluminescence, optical transmittance and radiation hardness studied by -ray irradiation in laboratories at Giessen and Minsk. The obtained results confirmed that the technological approach of CRYTUR will allow to produce PWO crystals with properties very close to the PWO-II specifications of the PANDA experiment at FAIR (Darmstadt, Germany).
机译:当前,需要将高质量的钨酸铅(PWO)闪烁材料用于电磁量热法(EMC)。不幸的是,在Bogoroditsk技术化工厂(俄罗斯Bogoroditsk)关闭之后,停止了使用Czochralski方法的钨酸铅的批量生产。 CRYTUR(捷克共和国的Turnov)具有很长的经验,并且在氧化物晶体的开发和批量生产中具有必要的技术,他们表示有兴趣满足高能物理学界对PWO的要求。去年,CRYTUR开始了钨酸铅晶体的开发。在不同的技术条件下生产了几个系列的样品。在吉森(Giessen)和明斯克(Minsk)的实验室中,通过射线辐照研究了所有测试晶体的光产量,闪烁动力学,光致发光,光透射率和辐射硬度。获得的结果证实,CRYTUR的技术方法将允许生产性能与FAIR(德国达姆施塔特)的PANDA实验的PWO-II规格非常接近的PWO晶体。

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