论文标题
来自自动区域的岩石样品的放射性研究
Radiopurity studies of a rock sample from the Aut region
论文作者
论文摘要
正在努力为印度建立一个地下实验室,以进行罕见的事件研究,例如双重β衰变,暗物质等。对于此类实验,缓解辐射背景至关重要,并且了解该地点的环境背景,起源于岩石,是一个关键因素之一。通过这种动机,使用TIFR低背景实验设置(Tiles)进行了喜马al尔邦(印度)自动隧道潜在实验室的岩石样品的放射性研究。与来自BWH(Bodi West Hill)的样品相比,Aut Rock中$^{40} $ K的浓度低约1000倍,这是泰米尔纳德邦(India)(印度印度)的当前指定地点的基于印度的中微子天文台的地点。天然放射性跟踪杂质$^{232} $ Th在Aut Rock中较低,而$^{238} $ U比BWH岩石高一些。总体而言,AUT的环境伽马射线背景预计将低于BWH,而环境中子背景预计相似。此外,为了评估中子诱导的长期活性,在孟买Pelletron Linac设施的AUT和BWH岩石样品上都进行了快速中子激活研究。
Efforts are underway to set up an underground laboratory in India for rare event studies like double beta decay, dark matter, etc. For such experiments, mitigation of radiation background is of paramount importance and understanding ambient background at the site, originating from the rock, is one of the crucial factors. With this motivation, the radiopurity studies of a rock sample from the potential laboratory site in the Aut tunnel of Himachal Pradesh (India) have been carried out using the TIFR low background experimental setup (TiLES). The concentration of $^{40}$K in Aut rock is observed to be lower by a factor of ~1000 as compared to the samples from BWH (Bodi West Hill), Tamil Nadu (India), current designated site for India-based Neutrino Observatory. The natural radioactive trace impurity $^{232}$Th is lower in the Aut rock, while $^{238}$U is somewhat higher than the BWH rock. Overall, the ambient gamma ray background at Aut is expected to be lower than the BWH, while ambient neutron background is expected to be similar. Further, to assess the neutron-induced long lived activity, fast neutron activation studies have been carried out on the both Aut and BWH rock samples at the Pelletron Linac Facility, Mumbai.