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PSR B1237+25的强脉冲辐射特性的观测与研究 被引量:1
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作者 麦麦提艾力·米吉提 温志刚 +4 位作者 王娜 王兆军 袁建平 YUEN Rai 闫文明 《天文学报》 CSCD 北大核心 2021年第1期1-16,共16页
强脉冲是一种特殊的单脉冲辐射,表现为较强的射电爆发.利用新疆天文台南山25 m射电望远镜研究了PSR B1237+25的强脉冲辐射特性.发现探测到的793个强脉冲出现在积分轮廓的所有辐射成分中,峰值流量密度是平均脉冲的10.2至82.5倍.用对数正... 强脉冲是一种特殊的单脉冲辐射,表现为较强的射电爆发.利用新疆天文台南山25 m射电望远镜研究了PSR B1237+25的强脉冲辐射特性.发现探测到的793个强脉冲出现在积分轮廓的所有辐射成分中,峰值流量密度是平均脉冲的10.2至82.5倍.用对数正态分布对强脉冲的峰值流量密度比、信噪比和脉冲宽度的分布进行了拟合.在1540 MHz频率下首次发现PSR B1237+25有新的、微弱的辐射成分.新发现的最内锥辐射属于部分锥,前导成分非常微弱,因此很难被探测到.对3层锥结构进行的详细研究发现新成分非常靠近核区,辐射区高度以约300 km为步长逐步升高,中心锥和外锥辐射可能来自同一套磁力线. 展开更多
关键词 脉冲星 个别 PSR b1237+25 脉冲星 强脉冲 方法 观测 方法 数据分析
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A Detailed Study of Mode Changing and Modulation of PSR B1237+25 with FAST
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作者 Zheng-Wu Wang Mao Yuan +2 位作者 Lin Wang Cheng-Min Zhang Bo Peng 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2022年第7期73-83,共11页
PSR B1237+25,whose mean pulse profile has five components,is a well-known star to study pulsar emission geometries.We conducted mode changing and modulation analysis on this pulsar using FAST data at 1.25 GHz with a b... PSR B1237+25,whose mean pulse profile has five components,is a well-known star to study pulsar emission geometries.We conducted mode changing and modulation analysis on this pulsar using FAST data at 1.25 GHz with a bandwidth of 400 MHz.We observed and identified three emission modes of this pulsar:a quiet normal mode that has little or no core activity with distinctive 2.8-period subpulse modulation on its outer cone,a flare normal mode in which the core is highly active and an abnormal mode in which the core is active and the last component is weak.We found that the core activity cuts off the position angle traverse in flare normal mode and leads to a position angle jumping in abnormal mode.We also found that there exists a quasi-periodical modulation on the outer conal components.Such modulation shows an irregular wave-like pattern,and has a weak correlation with the core component.We discuss the likely origin of such a modulation,and argue that this modulation can be interpreted as precession of the emission cones around the magnetic axis. 展开更多
关键词 (stars:)pulsars:individual(PSR b1237+25) radiation mechanisms:non-thermal magnetic fields polarization
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Search for giant pulses of radio pulsars at frequency 111 MHz with LPA radio telescope
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作者 Andrey Nikolaevich Kazantsev Vladimir Alexeevich Potapov 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2018年第8期71-82,共12页
We have used the unique low frequency sensitivity of the Large Phased Array (LPA) radio telescope of Pushchino Radio Astronomy Observatory to collect a dataset consisting of single pulse observations of second perio... We have used the unique low frequency sensitivity of the Large Phased Array (LPA) radio telescope of Pushchino Radio Astronomy Observatory to collect a dataset consisting of single pulse observations of second period pulsars in the Northern Hemisphere. During observation sessions in 2011- 2017, we collected data on 71 pulsars at a frequency of 111 MHz using a digital pulsar receiver. We have discovered Giant Radio Pulses (GRPs) from pulsars B0301+09 and B 1237+25, and confirmed earlier reported generation of anomalously strong (probable giant) pulses from B 1133+16 in a statistically significant dataset. Data for these pulsars and from B0950+08 and B 1112+50, earlier reported as pulsars generating GRPs, were analyzed to evaluate their behavior over long time intervals. It was found that the statistical criterion (power-law spectrum of GRP distribution of energy and peak flux density) seems not to be strict for pulsars with a low magnetic field at their light cylinder. Moreover, spectra of some of these pulsars demonstrate unstable behavior with time and have a complex multicomponent shape. In the dataset for B0950+08, we have detected the strongest GRP from a pulsar with a low magnetic field at its light cylinder ever reported, having a peak flux density as strong as 16.8 kJy. 展开更多
关键词 STARS neutron - pulsars general - pulsars individual (PSR B0301+19 PSR B0320+39 PSR B0329+54 PSR B0809+74 PSR B0950+08 PSR B1112+50 PSR B1133+16 PSR b123725 - pulsars giant pulses individual pulses
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