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LOPES Detecting Radio Emission from Cosmic Ray Air Showers

机译:LOPES从宇宙射线风淋检测无线电发射

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Radio pulses emitted in the Atmosphere during the air shower development of high-energy primary cosmic rays were measured during the late 1960ies in the frequency range from 2 MHz to 520 MHz. Mainly due to difficulties with radio interference these measurements ceased in the late 1970ies. LOFAR (Low Frequency Array) is a new digital radio interferometer under development. Using high bandwidth ADCs and fast data processing it will be able to filter out most of the interference. By storing the whole waveform information in digital form one can analyze transient events like air showers even after they have been recorded. To test this new technology and to demonstrate its ability to measure air showers a "LOFAR Prototype Station" (LOPES) is set up to operate in conjunction with an existing air shower array (KASCADE-Grande). The first phase consisting of 10 antennas is already running. It operates in the frequency range of 40 to 80 MHz, using simple short dipole antennas and direct 2nd Nyquist sampling of the incoming wave. It has proven to be able to do simple astronomical measurements, like imaging of a solar burst. It has also demonstrated how digital interference suppression and beamforming can overcome the problem of radio interference and pick out air shower events.
机译:在1960年代后期,在2 MHz至520 MHz的频率范围内,测量了高能一次宇宙射线在空气淋浴过程中在大气中发射的无线电脉冲。主要由于无线电干扰的困难,这些测量在1970年代后期停止了。 LOFAR(低频阵列)是一种正在开发中的新型数字无线电干涉仪。使用高带宽ADC和快速的数据处理,它将能够滤除大部分干扰。通过以数字形式存储整个波形信息,即使记录了瞬态事件,也可以分析诸如风淋这样的瞬态事件。为了测试这项新技术并展示其测量风淋的能力,设置了“ LOFAR原型站”(LOPES)与现有的风淋阵列(KASCADE-Grande)结合使用。由10根天线组成的第一阶段已经在运行。它使用简单的短偶极天线和直接对入射波进行第二次奈奎斯特采样,在40至80 MHz的频率范围内工作。它已被证明能够进行简单的天文测量,例如对太阳爆发成像。它还证明了数字干扰抑制和波束成形如何能够克服无线电干扰问题并找出风淋事件。

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