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Underwater acoustic detection of ultra high energy neutrinos

机译:超高能中微子的水下声学检测

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We investigate the acoustic detection method of 10(18-20) eV neutrinos in a Mediterranean Sea environment. The acoustic signal is reevaluated according to dedicated cascade simulations and a complex phase dependant absorption model, and compared to previous studies. We detail the evolution of the acoustic signal as a function of the primary shower characteristics and of the acoustic propagation range. The effective volume of detection for a single hydrophone is given taking into account the limitations due to sea bed and surface boundaries as well as refraction effects. For this 'benchmark detector' we present sensitivity limits to astrophysical neutrino fluxes, from which sensitivity bounds for a larger acoustic detector can be derived. Results suggest that with a limited instrumentation the acoustic method would be more efficient at extreme energies, above 10(20) eV. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们研究了在地中海环境中10(18-20)eV中微子的声学检测方法。根据专用的级联模拟和复杂的相位相关的吸收模型重新评估声信号,并与以前的研究进行比较。我们详细介绍了声信号随主要淋浴特性和声传播范围的变化。考虑到由于海床和海面边界以及折射效应所带来的限制,给出了单个水听器的有效检测体积。对于这个“基准探测器”,我们提出了对天体中微子通量的灵敏度极限,从中可以得出更大的声探测器的灵敏度范围。结果表明,使用有限的仪器,声学方法在10(20)eV以上的极端能量下会更有效。 (c)2006 Elsevier B.V.保留所有权利。

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