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Saving Time: New Methods And Instrumentation For Radio Variability Studies

机译:节省时间:无线电可变性研究的新方法和仪器

摘要

My thesis describes new instrumentation and signal processing techniques developed for time-domain studies of the radio sky and applies these techniques to a variety of radio astronomical data. Time-domain algorithms were developed for the SERENDIP V survey, a commensal SETI survey operating at the Arecibo Observatory. Along with collaborators at the University of California at Berkeley, I helped develop the high frequency resolution digital FFT spectrometers used to collected the data. No signal with the characteristics of being from an extraterrestrial intelligence was observed. A method for automatically classifying broadband and narrowband signals in raw frequency-time data is presented. It uses both the first and second moments of a spectrum to characterize the how broad or narrowband a signal is. Our applications of this technique to real data show that this algorithm is an effective tool for radio frequency interference excision. A survey for rare, bright radio transients was undertaken with a 3.8 m radio telescope on the roof of the Space Sciences Building on Cornell's campus. This survey involved the end-to-end development of the hardware, software, and data analysis. The data were searched from single, dispersed pulses, but none were found. Multi-frequency observations of the eclipsing, binary white dwarf system J0651 were conducted at the Arecibo Observatory to search for variable emission, both short-duration, "burst-like" and periodic emission. The system has an orbital period of only 12.75 min, and this fast ro- tation may generate radio emission if the stars are magnetic, but no emission was seen. Five new pulsars, including three Rotating Radio Transients (RRATs), were discovered in a single pulse analysis of 23 months of Pulsar ALFA (PALFA) data collected with the Mock spectrometers. We expanded the existing pipeline to include several new algorithms, including the spectral modulation index and a single pulse rating. In addition to the new discoveries, forty-seven previously known pulsars were redetected. From this work I conclude that considering the time domain is key to fully understanding the radio sky. Time-domain studies require special algorithms and instrumentation and particular attention must be made to managing radio frequency interference.
机译:我的论文描述了为无线电天空的时域研究而开发的新仪器和信号处理技术,并将这些技术应用于各种射电天文数据。时域算法是为SERENDIP V调查开发的,SERENDIP V调查是在Arecibo天文台进行的SETI调查。与加利福尼亚大学伯克利分校的合作者一起,我帮助开发了用于采集数据的高频分辨率数字FFT光谱仪。没有观察到具有来自地外智力的特征的信号。提出了一种自动对原始频率时间数据中的宽带和窄带信号进行分类的方法。它使用频谱的第一刻和第二刻来表征信号的宽带或窄带。我们对该技术在实际数据中的应用表明,该算法是消除射频干扰的有效工具。在康奈尔大学校园的太空科学大楼的屋顶上,使用3.8 m射电望远镜对罕见的明亮无线电瞬变进行了调查。该调查涉及硬件,软件和数据分析的端到端开发。从单个分散的脉冲中搜索数据,但未找到。在阿雷西博天文台对日蚀双星白矮星系统J0651进行了多频观测,以寻找短时发射,“类爆”和周期性发射的可变发射。该系统的轨道周期仅为12.75分钟,如果恒星是磁性的,这种快速旋转可能会产生无线电辐射,但看不到任何辐射。在通过模拟光谱仪收集的23个月的脉冲星ALFA(PALFA)数据的单脉冲分析中,发现了五个新的脉冲星,包括三个旋转无线电瞬变(RRAT)。我们扩展了现有管道,以包括几种新算法,包括频谱调制指数和单个脉冲额定值。除新发现外,还重新发现了47个先前已知的脉冲星。从这项工作中,我得出结论,考虑时域是充分理解无线电天空的关键。时域研究需要特殊的算法和仪器,必须特别注意管理射频干扰。

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    Spitler Laura;

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  • 年度 2013
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