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Echo Location: Distances to Galactic Supernovae From ASAS-SN Light Echoes and 3D Dust Maps
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abstract
Light echoes occur when light from a luminous transient is scattered by dust back into our line of sight with a time delay due to the extra propagation distance. We introduce a novel approach to estimating the distance to a source by combining light echoes with recent three-dimensional dust maps. We identify light echoes from the historical supernovae Cassiopeia A and SN 1572 (Tycho) in nearly a decade of imaging from the All-Sky Automated Survey for Supernovae (ASAS-SN). Using these light echoes, we find distances of $3.6\pm0.1$ kpc and $3.2^{+0.1}_{-0.2}$ kpc to Cas A and Tycho, respectively, which are generally consistent with previous estimates but are more precise. These distance uncertainties are primarily dominated by the low distance resolution of the 3D dust maps, which will likely improve in the future. The candidate single degenerate explosion donor stars B and G in Tycho are clearly foreground stars. Finally, the inferred reddening towards each SN agrees well with the intervening HI column density estimates from X-ray analyses of the remnants.
Forward citations
Cited by 2 Pith papers
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The ASAS-SN Low Surface Brightness Survey I: Proof-of-Concept and Potential Applications
Stacked ASAS-SN images reach a median 3-sigma surface brightness limit of 26.1 mag per square arcsecond off the Galactic plane and recover 82 percent of known ultra-diffuse galaxies in the DES footprint.
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Cassiopeia A's Reverse Shock and its Effects on the Expanding SN Ejecta
Optical proper motions of brightening ejecta show Cas A's reverse shock moves outward at 1000 to 2000 km/s in the sky frame, with no firm evidence for the ~2000 km/s inward motion reported from X-rays.
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