The CHESS survey of the L1157-B1 shock region: CO spectral signatures of jet-driven bowshocks
B. Lefloch, S. Cabrit, G. Busquet, C. Codella, C. Ceccarelli, J., Cernicharo, J.R. Pardo, M. Benedettini, D.C. Lis, B. Nisini

TL;DR
This study uses Herschel and other telescopes to analyze CO spectral lines in the L1157-B1 shock region, revealing three distinct shock components and their physical conditions, advancing understanding of jet-driven bowshock dynamics.
Contribution
The paper introduces a detailed spectral analysis of CO lines revealing three quasi-isothermal shock components in the L1157-B1 region, linking spectral signatures to physical shock conditions.
Findings
Three exponential components fit CO line profiles well
Identified shock temperatures: 210K, 64K, 23K
Similar exponential laws may explain other outflows' entrainment
Abstract
The unprecedented sensitivity of Herschel coupled with the high resolution of the HIFI spectrometer permits studies of the intensity-velocity relationship I(v) in molecular outflows, over a higher excitation range than possible up to now. In the course of the CHESS Key Program, we have observed toward the bright bowshock region L1157-B1 the CO rotational transitions between J=5-4 and J=16-15 with HIFI, and the J=1-0, 2-1 and 3-2 with the IRAM-30m and the CSO telescopes. We find that all the line profiles I_{CO}(v) are well fit by a linear combination of three exponential laws exp(-|v/v_0|) with v_0= 12.5, 4.4 and 2.5km/s. The first component dominates the CO emission at J_up > 13, as well as the high-excitation lines of SiO and H2O. The second component dominates for 3 < J_up < 10 and the third one for J_up < 2. We show that these exponentials are the signature of quasi-isothermal…
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