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First results of the Instrumentation Line for the deep-sea ANTARES neutrino telescope

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arxiv astro-ph/0606229 v1 pith:D47EAE53 submitted 2006-06-09 astro-ph

classification astro-ph
keywords antaresopticalbetterdetectorinstrumentationlinemilommodules
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abstract

In 2005, the ANTARES Collaboration deployed and operated at a depth of 2500 m a so-called Mini Instrumentation Line equipped with Optical Modules (MILOM) at the ANTARES site. The various data acquired during the continuous operation from April to December 2005 of the MILOM confirm the satisfactory performance of the Optical Modules, their front-end electronics and readout system, as well as the calibration devices of the detector. The in-situ measurement of the Optical Module time response yields a resolution better than 0.5 ns. The performance of the acoustic positioning system, which enables the spatial reconstruction of the ANTARES detector with a precision of about 10 cm, is verified. These results demonstrate that with the full ANTARES neutrino telescope the design angular resolution of better than $0.3^\circ$ can be realistically achieved.

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  1. Transforming Antarctic Ice into a Cherenkov Neutrino Detector

    astro-ph.HE 2024-11 unverdicted

    IceCube built a cubic-kilometer Cherenkov detector in Antarctic ice and discovered a diffuse flux of cosmic neutrinos, identified the first neutrino sources, and observed the Galactic plane in neutrinos.

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