Aql X-1 from dawn 'til dusk: the early rise, fast state transition and decay of its 2024 outburst

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Main Authors: Marino, A., Zelati, F. Coti, Alabarta, K., Russell, D. M., Cavecchi, Y., Rea, N., Rout, S. K., Di Salvo, T., Homan, J., Jurado-López, Á., Ji, L., Soria, R., Russell, T. D., Wang, Y. L., Anitra, A., Baglio, M. C., Feng, H., Fijma, S., Guillot, S., Huang, Y. F., Illiano, G., Imbrogno, M., Jin, C., Lewis, F., Liang, Y. F., Liu, M. J., Ma, R., Mastroserio, G., Motta, S. E., Ness, J. U., Parent, E., Patruno, A., Saikia, P., Tao, L., Veresvarska, M., Xu, X. P., Yuan, W., Zhang, G. B., Zhang, Z. J.
Format: Preprint
Published: 2025
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author Marino, A.
Zelati, F. Coti
Alabarta, K.
Russell, D. M.
Cavecchi, Y.
Rea, N.
Rout, S. K.
Di Salvo, T.
Homan, J.
Jurado-López, Á.
Ji, L.
Soria, R.
Russell, T. D.
Wang, Y. L.
Anitra, A.
Baglio, M. C.
Feng, H.
Fijma, S.
Guillot, S.
Huang, Y. F.
Illiano, G.
Imbrogno, M.
Jin, C.
Lewis, F.
Liang, Y. F.
Liu, M. J.
Ma, R.
Mastroserio, G.
Motta, S. E.
Ness, J. U.
Parent, E.
Patruno, A.
Saikia, P.
Tao, L.
Veresvarska, M.
Xu, X. P.
Yuan, W.
Zhang, G. B.
Zhang, Z. J.
author_facet Marino, A.
Zelati, F. Coti
Alabarta, K.
Russell, D. M.
Cavecchi, Y.
Rea, N.
Rout, S. K.
Di Salvo, T.
Homan, J.
Jurado-López, Á.
Ji, L.
Soria, R.
Russell, T. D.
Wang, Y. L.
Anitra, A.
Baglio, M. C.
Feng, H.
Fijma, S.
Guillot, S.
Huang, Y. F.
Illiano, G.
Imbrogno, M.
Jin, C.
Lewis, F.
Liang, Y. F.
Liu, M. J.
Ma, R.
Mastroserio, G.
Motta, S. E.
Ness, J. U.
Parent, E.
Patruno, A.
Saikia, P.
Tao, L.
Veresvarska, M.
Xu, X. P.
Yuan, W.
Zhang, G. B.
Zhang, Z. J.
contents Transient Low-Mass X-ray Binaries (LMXBs) are usually first detected by all-sky X-ray monitors when they enter new outbursts, typically at X-ray luminosities above $\sim$10$^{36}$ erg/s. Observations of these sources during the early rise of the outbursts have so far been very limited. However, the launch of the Einstein Probe (EP) has greatly improved our ability to detect fainter X-ray activity, unlocking access to the outburst early rise. In September 2024, EP detected the early onset of a new outburst from the neutron star LMXB Aql X-1, catching the source at a luminosity below 10$^{35}$ erg/s. In this paper we present results from a comprehensive, multi-wavelength campaign of this event, combining data from EP, NICER, NuSTAR, Swift and Las Cumbres Observatory covering the full outburst from its early rise through its decay. By comparing X-ray and optical light curves obtained with Las Cumbres Observatory during the initial rise, we show that the start of the X-ray emission lagged the optical rise by, at most, 13 days. Time-resolved X-ray spectroscopy revealed how the geometry and the physical properties of the accretion flow evolve during this early stage of the outburst, as well as at higher luminosities as the source transitioned through the canonical X-ray spectral states - hard, intermediate and soft. These data show that the source underwent a very rapid, about 12-h long, transition from the hard to the soft state about two weeks after the optical onset of the outburst. The evolution of the temperature and physical sizes of both the inner region of the disk and a black body near the NS surface suggest that at the state transition, a boundary and spreading layer likely formed. We discuss these results in the context of time-scales for outburst evolution and state transitions in accreting neutron stars and black holes.
format Preprint
id arxiv_https___arxiv_org_abs_2511_16437
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Aql X-1 from dawn 'til dusk: the early rise, fast state transition and decay of its 2024 outburst
Marino, A.
Zelati, F. Coti
Alabarta, K.
Russell, D. M.
Cavecchi, Y.
Rea, N.
Rout, S. K.
Di Salvo, T.
Homan, J.
Jurado-López, Á.
Ji, L.
Soria, R.
Russell, T. D.
Wang, Y. L.
Anitra, A.
Baglio, M. C.
Feng, H.
Fijma, S.
Guillot, S.
Huang, Y. F.
Illiano, G.
Imbrogno, M.
Jin, C.
Lewis, F.
Liang, Y. F.
Liu, M. J.
Ma, R.
Mastroserio, G.
Motta, S. E.
Ness, J. U.
Parent, E.
Patruno, A.
Saikia, P.
Tao, L.
Veresvarska, M.
Xu, X. P.
Yuan, W.
Zhang, G. B.
Zhang, Z. J.
High Energy Astrophysical Phenomena
Transient Low-Mass X-ray Binaries (LMXBs) are usually first detected by all-sky X-ray monitors when they enter new outbursts, typically at X-ray luminosities above $\sim$10$^{36}$ erg/s. Observations of these sources during the early rise of the outbursts have so far been very limited. However, the launch of the Einstein Probe (EP) has greatly improved our ability to detect fainter X-ray activity, unlocking access to the outburst early rise. In September 2024, EP detected the early onset of a new outburst from the neutron star LMXB Aql X-1, catching the source at a luminosity below 10$^{35}$ erg/s. In this paper we present results from a comprehensive, multi-wavelength campaign of this event, combining data from EP, NICER, NuSTAR, Swift and Las Cumbres Observatory covering the full outburst from its early rise through its decay. By comparing X-ray and optical light curves obtained with Las Cumbres Observatory during the initial rise, we show that the start of the X-ray emission lagged the optical rise by, at most, 13 days. Time-resolved X-ray spectroscopy revealed how the geometry and the physical properties of the accretion flow evolve during this early stage of the outburst, as well as at higher luminosities as the source transitioned through the canonical X-ray spectral states - hard, intermediate and soft. These data show that the source underwent a very rapid, about 12-h long, transition from the hard to the soft state about two weeks after the optical onset of the outburst. The evolution of the temperature and physical sizes of both the inner region of the disk and a black body near the NS surface suggest that at the state transition, a boundary and spreading layer likely formed. We discuss these results in the context of time-scales for outburst evolution and state transitions in accreting neutron stars and black holes.
title Aql X-1 from dawn 'til dusk: the early rise, fast state transition and decay of its 2024 outburst
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2511.16437