The jet collimation profile at high resolution in BL Lacertae
C. Casadio, N. R. MacDonald, B. Boccardi, S. G. Jorstad, A. P., Marscher, T. P. Krichbaum, J. A. Hodgson, J-Y. Kim, E. Traianou, Z. R., Weaver, M. G\'omez Garrido, J. Gonz\'alez Garc\'ia, J. Kallunki, M., Lindqvist, S. S\'anchez, J. Yang, and J. A. Zensus

TL;DR
This study uses high-resolution VLBI data to analyze the jet collimation profile of BL Lacertae, revealing a conical jet structure with a region of increased expansion possibly linked to external pressure changes near the Bondi radius.
Contribution
It provides the first detailed high-resolution analysis of BL Lac's jet collimation profile, clarifying previous controversies and linking jet geometry to environmental factors.
Findings
Jet in BL Lac expands conically overall.
A high-expansion region between 5-10 pc from the black hole.
Recollimation shock observed around 17 pc.
Abstract
Controversial studies on the jet collimation profile of BL Lacertae (BL Lac), the eponymous blazar of BL Lac objects class, complicate the scenario in this already puzzling class of objects. Understanding the jet geometry, in connection with the jet kinematics and the physical conditions in the surrounding medium, is fundamental to better constrain the formation, acceleration and collimation mechanisms in extragalactic jets. With the aim of investigating the jet geometry in the innermost regions of the jet of BL Lac, and solving the controversy, we explore the radio jet in this source, using high resolution millimeter-wave VLBI data. We collect 86GHz GMVA and 43GHz VLBA data to obtain stacked images that we use to infer the jet collimation profile by means of two comparable methods. We analyze the kinematics at 86GHz, and we discuss it in the context of the jet expansion. Finally we…
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