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Excess Optical Enhancement Observed with ARCONS for Early Crab Giant Pulses

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arxiv 1309.3270 v2 pith:N4WC5DJH submitted 2013-09-12 astro-ph.HE

classification astro-ph.HE
keywords opticalpulseradiogiantobservepeakpulsesaccompanying
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abstract

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 ARCONS, 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 GUPPI backend. We see an $11.3\pm2.5\%$ 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 $3.2\pm0.5\%$ 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 $2.8\pm0.8\%$ 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.

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  1. Development of an imager with high time resolution optical photon counter

    astro-ph.IM 2025-06 conditional novelty 4.0 of 10

    A new single-board readout for the IMONY imager runs all 64 Geiger-APD pixels with 100 ns timestamps, and initial tests show dark counts and 500 Hz laser pulses are detected on every channel.

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