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Towards a depleted argon time projection chamber WIMP search: Darkside prototype analysis and predicted sensitivity.

机译:走向耗尽的氩气时间投影室WIMP搜索:Darkside原型分析和预测的灵敏度。

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摘要

Scientists have now accumulated overwhelming evidence indicating that over 80% of the mass of the universe is in the form of dark matter, neutral particles with ultra-weak couplings to ordinary matter. One compelling candidate is a Weakly Interacting Massive Particle or WIMP, with mass on the order of 100 GeV.The signal of a WIMP interaction in a detector is a low energy (typically below ∼100 keV) recoiling atomic nucleus. The expected rate is at most a few interactions per year per ton of target. The most critical issue for direct WIMP searches is reducing the background in the detector below this very low rate. Argon is a promising target because measurements of the scintillation pulse shape and the scintillation-to-ionization ratio allow the reduction of gamma-induced signals, the largest source of background, by a factor of 108 or better. One of the major drawbacks of argon is the presence of radioactive 39Ar, which results in a decay rate of ∼1 Bq/kg in natural argon. Because 39Ar is produced primarily in the upper atmosphere, the 39Ar fraction can be reduced significantly by obtaining the argon from underground wells.;Our collaboration, DarkSide, is developing a series of two-phase argon time projection chambers (TPCs) utilizing this depleted argon, along with passive shielding and active neutron and muon vetoes, for WIMP searches. I present results from a recent campaign of a 10 kg active mass prototype TPC that demonstrate the successful realization of many of the technical aspects necessary for a full-scale detector, in particular an electron-equivalent light yield of 4.5 photoelectrons per keV deposited, and a free electron lifetime in excess of 200 microseconds. Based on this successful prototype and Monte Carlo simulations, I then conclude that DarkSide-50, a 50 kg active mass TPC to be installed in LNGS, can likely acquire data background-free for three years, accumulating a fiducial exposure of ∼100 kg-years and reaching a sensitivity to the WIMP-nucleon cross section of ∼3x10 -45 cm2.;I also present some details on the analysis of Borexino data that resulted in the first real-time, spectroscopic measurement of 7Be solar neutrino interactions.
机译:如今,科学家已经积累了压倒性的证据,表明宇宙中超过80%的物质都是暗物质,与普通物质具有超弱耦合的中性粒子形式。一种引人注目的候选物质是质量为100 GeV的弱相互作用质量粒子或WIMP。检测器中WIMP相互作用的信号是低能量(通常低于〜100 keV)的反冲原子核。预期的速度是每年每吨目标最多互动几次。直接WIMP搜索的最关键问题是将检测器的背景降低到非常低的速率以下。氩是有希望的目标,因为对闪烁脉冲形状和闪烁电离比的测量可以将伽马感应信号(背景的最大来源)降低108倍或更好。氩气的主要缺点之一是存在放射性39Ar,这导致天然氩气的衰变速率约为1 Bq / kg。由于39Ar主要在高层大气中产生,因此可以通过从地下井中获取氩气来显着减少39Ar含量。;我们的DarkSide合作正在利用这种贫乏的氩气开发一系列两相氩气时间投射室(TPC)。以及无源屏蔽,有源中子和μ子否决权,用于WIMP搜索。我介绍了一项最近的活动,该活动是一项10公斤有效质量原型TPC的试验,该试验证明成功实现了满量程检测器所必需的许多技术方面,尤其是沉积的每keV的电子等效光产量为4.5个光电子,并且自由电子寿命超过200微秒。根据这个成功的原型和蒙特卡洛模拟,我得出的结论是,将安装在LNGS中的50公斤有效质量TPC DarkSide-50可能会在三年内无背景获取数据,累积的基准曝光量约为100公斤,年来,对WIMP核横截面的灵敏度达到了约3x10 -45 cm2。我还介绍了有关Borexino数据分析的一些细节,这些数据导致了首次对7Be太阳中微子相互作用进行实时的光谱测量。

著录项

  • 作者

    Loer, Ben Michael.;

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Physics Astrophysics.;Physics Elementary Particles and High Energy.;Physics Radiation.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 301 p.
  • 总页数 301
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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