Exploring jet-launching conditions for supergiant fast X-ray transients

Context. In the magneto-centrifugal mechanism for jet formation, accreting neutron stars are assumed to produce relativistic jets only if their surface magnetic field is weak enough (B ∼ 10<SUP>8</SUP> G). However, the most common manifestation of neutron stars are pulsars, whose magneti...

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Autores principales: García, Federico, Aguilera, Deborah N., Romero, Gustavo Esteban
Formato: Articulo
Lenguaje:Inglés
Publicado: 2014
Materias:
Acceso en línea:http://sedici.unlp.edu.ar/handle/10915/85429
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id I19-R120-10915-85429
record_format dspace
institution Universidad Nacional de La Plata
institution_str I-19
repository_str R-120
collection SEDICI (UNLP)
language Inglés
topic Ciencias Astronómicas
Accretion, accretion disks
Magnetic fields
Stars: neutron
X-rays: binaries
spellingShingle Ciencias Astronómicas
Accretion, accretion disks
Magnetic fields
Stars: neutron
X-rays: binaries
García, Federico
Aguilera, Deborah N.
Romero, Gustavo Esteban
Exploring jet-launching conditions for supergiant fast X-ray transients
topic_facet Ciencias Astronómicas
Accretion, accretion disks
Magnetic fields
Stars: neutron
X-rays: binaries
description Context. In the magneto-centrifugal mechanism for jet formation, accreting neutron stars are assumed to produce relativistic jets only if their surface magnetic field is weak enough (B ∼ 10<SUP>8</SUP> G). However, the most common manifestation of neutron stars are pulsars, whose magnetic field distribution peaks at B ∼ 10<SUP>12</SUP> G. If the neutron star magnetic field has at least this strength at birth, it must decay considerably before jets can be launched in binary systems. Aims. We study the magnetic field evolution of a neutron star that accretes matter from the wind of a high-mass stellar companion so that we can constrain the accretion rate and the impurities in the crust, which are necessary conditions for jet formation. Methods. We solved the induction equation for the diffusion and convection of the neutron star magnetic field confined to the crust, assuming spherical accretion in a simpliflied one-dimensional treatment. We incorporated state-of-the-art microphysics, including consistent thermal evolution profiles, and assumed two different neutron star cooling scenarios based on the superfluidity conditions at the core. Results. We find that in this scenario, magnetic field decay at long timescales is governed mainly by the accretion rate, while the impurity content and thermal evolution of the neutron star play a secondary role. For accretion rates Ṁ ≥ 10<SUP>-10</SUP> M⊙ yr<SUP>-1</SUP>, surface magnetic fields can decay up to four orders of magnitude in ∼10<SUP>7</SUP> yr, which is the timescale imposed by the evolution of the high-mass stellar companion in these systems. Based on these results, we discuss the possibility of transient jet-launching in strong wind-accreting high-mass binary systems like supergiant fast X-ray transients.
format Articulo
Articulo
author García, Federico
Aguilera, Deborah N.
Romero, Gustavo Esteban
author_facet García, Federico
Aguilera, Deborah N.
Romero, Gustavo Esteban
author_sort García, Federico
title Exploring jet-launching conditions for supergiant fast X-ray transients
title_short Exploring jet-launching conditions for supergiant fast X-ray transients
title_full Exploring jet-launching conditions for supergiant fast X-ray transients
title_fullStr Exploring jet-launching conditions for supergiant fast X-ray transients
title_full_unstemmed Exploring jet-launching conditions for supergiant fast X-ray transients
title_sort exploring jet-launching conditions for supergiant fast x-ray transients
publishDate 2014
url http://sedici.unlp.edu.ar/handle/10915/85429
work_keys_str_mv AT garciafederico exploringjetlaunchingconditionsforsupergiantfastxraytransients
AT aguileradeborahn exploringjetlaunchingconditionsforsupergiantfastxraytransients
AT romerogustavoesteban exploringjetlaunchingconditionsforsupergiantfastxraytransients
bdutipo_str Repositorios
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