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An X-ray, IR, and Submillimeter Flare of Sagittarius A*

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arxiv 0712.2877 v2 pith:N3TUJAMI submitted 2007-12-18 astro-ph

classification astro-ph
keywords submillimeterflarex-rayemissionpeakconsistentobservedbeen
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Energetic flares are observed in the Galactic supermassive black hole Sagittarius A* from radio to X-ray wavelengths. On a few occasions, simultaneous flares have been detected in IR and X-ray observations, but clear counterparts at longer wavelengths have not been seen. We present a flare observed over several hours on 2006 July 17 with the Chandra X-Ray Observatory, the Keck II telescope, the Caltech Submillimeter Observatory, and the Submillimeter Array. All telescopes observed strong flare events, but the submillimeter peak is found to occur nearly 100 minutes after the X-ray peak. Submillimeter polarization data show linear polarization in the excess flare emission, increasing from 9% to 17% as the flare passes through its peak, consistent with a transition from optically thick to thin synchrotron emission. The temporal and spectral behavior of the flare require that the energetic electrons responsible for the emission cool faster than expected from their radiative output. This is consistent with adiabatic cooling in an expanding emission region, with X-rays produced through self-Compton scattering, although not consistent with the simplest model of such expansion. We also present a submillimeter flare that followed a bright IR flare on 2005 July 31. Compared to 2006, this event had a larger peak IR flux and similar submillimeter flux, but it lacked measurable X-ray emission. It also showed a shorter delay between the IR and submillimeter peaks. Based on these events we propose a synchrotron and self-Compton model to relate the submillimeter lag and the variable IR/X-ray luminosity ratio.

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Forward citations

Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Studying black holes on horizon scales with space-VLBI

    astro-ph.IM 2019-09 unverdicted novelty 4.0 of 10

    A single 3.5-meter low-Earth-orbit dish could extend the Event Horizon Telescope to 690 GHz, enabling time-resolved movies of Sgr A* and spatially resolving more than 20 black hole shadows.

  2. The Cherenkov Telescope Array view of the Galactic Center region

    astro-ph.HE 2019-08 conditional novelty 4.0 of 10

    Simulations of the planned CTA Galactic Center survey show that the observatory should reconstruct the central source spectrum with percent-level statistical precision and detect faint hour-long flares.

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