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Design and implementation of the TAROGE experiment

机译:TAROGE实验的设计与实现

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摘要

Taiwan astroparticle radiowave observatory for geo-synchrotron emissions (TAROGE) is an antenna array on the high mountains of Taiwan's east coast for the detection of ultra-high energy cosmic rays (UHECRs) in an energy above 10(18.5) eV. The antennas point toward the ocean to detect radiowave signals emitted by the UHECR-induced airshower as a result of its interaction with the geomagnetic field. Looking down from the coastal mountain, the effective area is enhanced by collecting both direct-emission as well as the ocean-reflected signals. This instrument also provides the capability of detecting earth-skimming tau-neutrino through its subsequent tau-decay induced shower. In order to prove the detection concept, initial two stations were successfully built at 1000m elevation near Heping township, Taiwan, in 2014-2015. Each station consists of 12 log-periodic dipole array antennas for 110-300MHz. The stations have been operating smoothly for radio survey and optimization of instrumental parameters. In this report, we discuss the design of TAROGE, the performance of the prototype station and the future prospect.
机译:台湾天文同步辐射的天文无线电波天文台(TAROGE)是台湾东海岸高山上的一个天线阵列,用于探测能量在10(18.5)eV以上的超高能宇宙射线(UHECR)。天线指向海洋,以检测由于UHECR感应的空气喷头与地磁场相互作用而产生的无线电波信号。从沿海山区往下看,有效面积通过收集直接发射信号和海洋反射信号得到增强。该仪器还具有通过其随后的tau衰变引起的阵雨来检测掠过tau中微子的能力。为了证明这种检测概念,2014-2015年在台湾和平乡附近成功在海拔1000m的位置成功建立了最初的两个站点。每个台站包含12个对数周期偶极子阵列天线,频率为110-300MHz。这些电台一直在顺利进行无线电调查和优化仪器参数。在本报告中,我们讨论了TAROGE的设计,原型站的性能以及未来的前景。

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