Balmer filaments in Tycho's supernova remnant: an interplay between cosmic-ray and broad-neutral precursors
Sladjana Kne\v{z}evi\'c, Ronald L\"asker, Glenn van de Ven, Joan Font,, John C. Raymond, Coryn A.L. Bailer-Jones, John Beckman, Giovanni Morlino,, Parviz Ghavamian, John P. Hughes, Kevin Heng

TL;DR
This study uses high-resolution Hα spectroscopy and Bayesian analysis to investigate Balmer filaments in Tycho's supernova remnant, revealing the presence of shock precursors and their role in cosmic-ray acceleration.
Contribution
First detailed spectroscopic analysis of Tycho's Balmer filaments with Bayesian inference, confirming shock precursors and their interplay in cosmic-ray acceleration.
Findings
Narrow-line width median 54.8 km/s, broader than thermal expectations.
Widespread intermediate-line emission indicating broad-neutral precursors.
Systemic velocity of Tycho remnant measured at -34 km/s.
Abstract
We present H spectroscopic observations and detailed modelling of the Balmer filaments in the supernova remnant Tycho. We used Galaxy H Fabry-P\'erot Spectrometer on the William Herschel Telescope with a 3.4'3.4' field-of-view, 0.2" pixel scale and \sigma_\rm{instr}=8.1 km/s resolution at 1" seeing for hours, resulting in 82 spatial-spectral bins that resolve the narrow H line in the entire Tycho's northeastern rim. For the first time, we can mitigate artificial line broadening from unresolved differential motion, and probe H emission parameters in varying shock and ambient medium conditions. Broad H line remains unresolved within spectral coverage of 392 km/s. We employed Bayesian inference to obtain reliable parameter confidence intervals, and quantify the evidence for models with multiple line components. The median H…
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