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Advances in the growth of alkaline-earth halide single crystals for scintillator detectors

机译:闪烁探测器用碱土金属卤化物单晶的生长研究进展

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Alkaline-earth scintillators such as strontium iodide and other alkaline-earth halides activated with divalent europium represent some of the most efficient and highest energy resolution scintillators for use as gamma-ray detectors in a wide range of applications. These applications include the areas of nuclear nonproliferation, homeland security, the detection of undeclared nuclear material, nuclear physics and materials science, medical diagnostics, space physics, high energy physics, and radiation monitoring systems for first responders, police, and fire/rescue personnel. Recent advances in the growth of large single crystals of these scintillator materials hold the promise of higher crystal yields and significantly lower detector production costs. In the present work, we describe new processing protocols that, when combined with our molten salt filtration methods, have led to advances in achieving a significant reduction of cracking effects during the growth of single crystals of SrI_2:Eu~(2+). In particular, we have found that extended pumping on the molten crystal-growth charge under vacuum for time periods extending up to 48 hours is generally beneficial in compensating for variations in the alkaline-earth halide purity and stoichiometry of the materials as initially supplied by commercial sources. These melt-pumping and processing techniques are now being applied to the purification of CaI_2:Eu~(2+) and some mixed-anion europium-doped alkaline-earth halides prior to single-crystal growth by means of the vertical Bridgman technique. The results of initial studies of the effects of aliovalent doping of SrI_2:Eu~(2+) on the scintillation characteristics of this material are also described.
机译:碱性地球闪烁体,例如碘化锶和其他被二价euro活化的碱土金属卤化物,代表了一些最有效和最高能量分辨率的闪烁体,可在广泛的应用中用作伽马射线探测器。这些应用包括核不扩散,国土安全,未申报的核材料的检测,核物理和材料科学,医学诊断,空间物理学,高能物理以及用于急救人员,警察和消防人员的辐射监测系统等领域。 。这些闪烁体材料的大单晶生长的最新进展有望提高晶体产量,并显着降低检测器的生产成本。在当前的工作中,我们描述了新的处理方案,当与我们的熔融盐过滤方法结合使用时,已导致在SrI_2:Eu〜(2+)单晶生长期间实现显着降低开裂效果的进步。特别是,我们发现,在真空下在熔融晶体生长装料上延长抽气时间长达48小时,通常有利于补偿碱土金属卤化物纯度和化学计量的变化,这是工业上最初提供的。资料来源。这些熔体泵送和加工技术现在正用于通过垂直Bridgman技术在单晶生长之前纯化CaI_2:Eu〜(2+)和一些混合阴离子掺杂alkaline的碱土金属卤化物。还描述了对SrI_2:Eu〜(2+)的异价掺杂对这种材料的闪烁特性的影响的初步研究结果。

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