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首页> 外文期刊>The Astrophysical Journal. Letters >EXCESS OPTICAL ENHANCEMENT OBSERVED WITH ARCONS FOR EARLY CRAB GIANT PULSES
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EXCESS OPTICAL ENHANCEMENT OBSERVED WITH ARCONS FOR EARLY CRAB GIANT PULSES

机译:早期螃蟹巨型脉冲的弧形观察到的过度光学增强

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We observe an extraordinary link in the Crab pulsar between the enhancement of an optical pulse and the timing of the corresponding giant radio pulse. At optical through infrared wavelengths, our observations use the high time resolution of ARray Camera for Optical to Near-IR Spectrophotometry, a unique superconducting energy-resolving photon-counting array at the Palomar 200 inch telescope. At radio wavelengths, we observe with the Robert C.Byrd Green Bank Telescope and the Green Bank Ultimate Pulsar Processing Instrument backend. We see an 11.3% ± 2.5% increase in peak optical flux for pulses that have an accompanying giant radio pulse arriving near the peak of the optical main pulse, in contrast to a 3.2% ± 0.5% increase when an accompanying giant radio pulse arrives soon after the optical peak.We also observe that the peak of the optical main pulse is 2.8%±0.8% enhanced when there is a giant radio pulse accompanying the optical interpulse. We observe no statistically significant spectral differences between optical pulses accompanied by and not accompanied by giant radio pulses. Our results extend previous observations of optical-radio correlation to the time and spectral domains. Our refined temporal correlation suggests that optical and radio emission are indeed causally linked, and the lack of spectral differences suggests that the same mechanism is responsible for all optical emission.
机译:我们在蟹状脉冲星中观察到光脉冲的增强与相应的巨型无线电脉冲的定时之间的非凡联系。在红外光波长范围内,我们的观测结果使用的是ARray相机的高时间分辨率,用于光学至近红外分光光度法,这是Palomar 200英寸望远镜中独特的超导能量分辨光子计数阵列。在无线电波长下,我们使用Robert C.Byrd Green Bank望远镜和Green Bank Ultimate Pulsar处理仪器后端进行观测。对于伴随着巨大无线电脉冲到达光学主脉冲峰值附近的脉冲,我们看到峰值光通量增加了11.3%±2.5%,而伴随着巨大无线电脉冲很快到达的脉冲则增加了3.2%±0.5%我们还观察到,当伴随着光脉冲的无线电脉冲很大时,光主脉冲的峰值增强了2.8%±0.8%。我们观察到,伴随和不伴随着巨大无线电脉冲的光脉冲之间没有统计上显着的光谱差异。我们的结果将先前对光-无线电相关性的观察扩展到了时域和光谱域。我们完善的时间相关性表明,光发射与无线电发射确实是因果相关的,而光谱差异的缺乏表明所有光发射都由相同的机制引起。

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