First results from ALPPS: a sub-Alfvénic streamer in SVS13A

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Autores principales: Cortes, P. C., Pineda, J. E., Hsieh, T. -H., Tobin, J. J., Saha, P., Girart, J. M., Gouellec, V. J. M. Le, Stephens, I. W., Looney, L. W., Koumpia, E., Valdivia-Mena, M. T., Cacciapuoti, L., Gieser, C., Offner, S. S. R., Caselli, P., Sanhueza, P., Segura-Cox, D., Fernandez-Lopez, M., Morii, K., Huang, B., Alves, F. O., Zhang, Q., Kwon, W., Hull, C. L. H., Li, Z. Y.
Formato: Preprint
Publicado: 2025
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author Cortes, P. C.
Pineda, J. E.
Hsieh, T. -H.
Tobin, J. J.
Saha, P.
Girart, J. M.
Gouellec, V. J. M. Le
Stephens, I. W.
Looney, L. W.
Koumpia, E.
Valdivia-Mena, M. T.
Cacciapuoti, L.
Gieser, C.
Offner, S. S. R.
Caselli, P.
Sanhueza, P.
Segura-Cox, D.
Fernandez-Lopez, M.
Morii, K.
Huang, B.
Alves, F. O.
Zhang, Q.
Kwon, W.
Hull, C. L. H.
Li, Z. Y.
author_facet Cortes, P. C.
Pineda, J. E.
Hsieh, T. -H.
Tobin, J. J.
Saha, P.
Girart, J. M.
Gouellec, V. J. M. Le
Stephens, I. W.
Looney, L. W.
Koumpia, E.
Valdivia-Mena, M. T.
Cacciapuoti, L.
Gieser, C.
Offner, S. S. R.
Caselli, P.
Sanhueza, P.
Segura-Cox, D.
Fernandez-Lopez, M.
Morii, K.
Huang, B.
Alves, F. O.
Zhang, Q.
Kwon, W.
Hull, C. L. H.
Li, Z. Y.
contents We present the first results from the ALMA Perseus Polarization Survey (ALPPS), focusing on the magnetic field in the SVS13A circumbinary disk. The dataset includes full-Stokes dust continuum observations at $\sim0\farcs3$ and 870 $μ$m, as well as molecular line emission from C$^{17}$O$(J=3 \rightarrow 2)$ at $\sim0\farcs3$, C$^{18}$O$(J=2 \rightarrow 1)$ at $\sim0\farcs2$, and DCN$(J=3 \rightarrow 2)$ at $\sim0\farcs1$ angular resolution. Our observations resolve both a previously identified dust spiral and an infalling streamer, capturing their spatial and kinematic structures. The streamer is traced from scales $>300$ au down to the circumbinary disk. Using alignment measure (AM) maps and histograms that compare the orientations of the plane-of-sky magnetic field with local intensity and velocity gradients, we find that the AM distribution peaks at a value of 1. This AM peak strongly suggests alignment between the field and the dust total intensity emission, as well as between the field and the gas velocity, which in turn suggests grain alignment by magnetic fields. From our data, we derive a magnetic field strength, B$_{\mathrm{pos}} \sim 1.1 \pm 0.6$\, mG, and a kinetic to magnetic energy ratio of $0.5 \pm 0.4$, suggesting magnetic dominance. We also produced a map of the Alfvénic Mach number, finding $\mathcal{M}_{\rm A} < 1$ along the streamer, consistent with sub-Alfvénic infalling motions. Therefore, the field is likely facilitating the inflow of material from the envelope onto the disk by constraining movement across the field lines. This represents the first detection of a magnetically sub-Alfvénic infalling streamer in a protostellar system.
format Preprint
id arxiv_https___arxiv_org_abs_2509_21701
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle First results from ALPPS: a sub-Alfvénic streamer in SVS13A
Cortes, P. C.
Pineda, J. E.
Hsieh, T. -H.
Tobin, J. J.
Saha, P.
Girart, J. M.
Gouellec, V. J. M. Le
Stephens, I. W.
Looney, L. W.
Koumpia, E.
Valdivia-Mena, M. T.
Cacciapuoti, L.
Gieser, C.
Offner, S. S. R.
Caselli, P.
Sanhueza, P.
Segura-Cox, D.
Fernandez-Lopez, M.
Morii, K.
Huang, B.
Alves, F. O.
Zhang, Q.
Kwon, W.
Hull, C. L. H.
Li, Z. Y.
Astrophysics of Galaxies
Solar and Stellar Astrophysics
We present the first results from the ALMA Perseus Polarization Survey (ALPPS), focusing on the magnetic field in the SVS13A circumbinary disk. The dataset includes full-Stokes dust continuum observations at $\sim0\farcs3$ and 870 $μ$m, as well as molecular line emission from C$^{17}$O$(J=3 \rightarrow 2)$ at $\sim0\farcs3$, C$^{18}$O$(J=2 \rightarrow 1)$ at $\sim0\farcs2$, and DCN$(J=3 \rightarrow 2)$ at $\sim0\farcs1$ angular resolution. Our observations resolve both a previously identified dust spiral and an infalling streamer, capturing their spatial and kinematic structures. The streamer is traced from scales $>300$ au down to the circumbinary disk. Using alignment measure (AM) maps and histograms that compare the orientations of the plane-of-sky magnetic field with local intensity and velocity gradients, we find that the AM distribution peaks at a value of 1. This AM peak strongly suggests alignment between the field and the dust total intensity emission, as well as between the field and the gas velocity, which in turn suggests grain alignment by magnetic fields. From our data, we derive a magnetic field strength, B$_{\mathrm{pos}} \sim 1.1 \pm 0.6$\, mG, and a kinetic to magnetic energy ratio of $0.5 \pm 0.4$, suggesting magnetic dominance. We also produced a map of the Alfvénic Mach number, finding $\mathcal{M}_{\rm A} < 1$ along the streamer, consistent with sub-Alfvénic infalling motions. Therefore, the field is likely facilitating the inflow of material from the envelope onto the disk by constraining movement across the field lines. This represents the first detection of a magnetically sub-Alfvénic infalling streamer in a protostellar system.
title First results from ALPPS: a sub-Alfvénic streamer in SVS13A
topic Astrophysics of Galaxies
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2509.21701