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We report on a thermonuclear (type-I) X-ray burst that was detected from the neutron star low-mass X-ray binary SAX J1810.8-2609 in 2007 with Swift. This event was longer (~20 min) and more energetic (a radiated energy of Eb~6.5E39 erg)…

High Energy Astrophysical Phenomena · Physics 2015-06-11 N. Degenaar , R. Wijnands

The evidences for the influence of thermonuclear (type-I) X-ray bursts upon the surrounding environments in neutron star low-mass X-ray binaries (LMXB) were detected previously via spectral and timing analyses. Benefitting from a broad…

Superbursts are long duration, rare, and extremely energetic thermonuclear explosions of neutron star low-mass X-ray binaries (NS LMXBs), which are proposed to be due to unstable carbon ignition. We report the superburst properties and…

High Energy Astrophysical Phenomena · Physics 2021-11-02 Zhaosheng Li , Yuanyue Pan , Maurizio Falanga

Precision measurements of neutron star radii can provide a powerful probe of the properties of cold matter beyond nuclear density. Beginning in the late 1970s it was proposed that the radius could be obtained from the apparent or inferred…

High Energy Astrophysical Phenomena · Physics 2015-05-14 Sudip Bhattacharyya , M. Coleman Miller , Duncan K. Galloway

Accretion disks around neutron stars regularly undergo sudden strong irradiation by Type I X-ray bursts powered by unstable thermonuclear burning on the stellar surface. We investigate the impact on the disk during one of the first X-ray…

The intense radiation flux of Type I X-ray bursts is expected to interact with the accretion flow around neutron stars. High frequency quasiperiodic oscillations (kHz QPOs), observed at frequencies matching orbital frequencies at tens of…

High Energy Astrophysical Phenomena · Physics 2014-09-05 P. Peille , J-F. Olive , D. Barret

We have found and analysed 16 multi-peaked type-I bursts from the neutron-star low mass X-ray binary 4U 1636$-$53 with the Rossi X-ray Timing Explorer (RXTE). One of the bursts is a rare quadruple-peaked burst which was not previously…

High Energy Astrophysical Phenomena · Physics 2020-11-25 Chen Li , Guobao Zhang , Mariano Méndez , Jiancheng Wang , Ming Lyu

We perform time-resolved spectroscopy of all the type I bursts from the Rapid Burster (MXB 1730-335) detected with the Rossi X-ray Timing Explorer. Type I bursts are detected at high accretion rates, up to \sim 45% of the Eddington…

High Energy Astrophysical Phenomena · Physics 2013-03-14 T. Bagnoli , J. J. M. in 't Zand , D. K. Galloway , A. L. Watts

Type-I X-ray bursts observed from neutron stars originate from intermittent unstable thermonuclear burning of accreted matter on these stars. Such bursts, particularly those reaching the Eddington luminosity and having a temporary…

High Energy Astrophysical Phenomena · Physics 2025-09-03 Sudip Bhattacharyya , Akshay Singh , Andrea Sanna

Two flares with a duration of several hours are reported for the low-mass X-ray binary 4U 1636-53. The characteristics of these flares (i.e., decay time scales, spectral softening, fluences) are very similar to the very long type-I X-ray…

Astrophysics · Physics 2009-11-06 Rudy Wijnands

The prototypical accretion-powered millisecond pulsar SAX J1808.4-3658 was observed simultaneously with Chandra-LETGS and RXTE-PCA near the peak of a transient outburst in November 2011. A single thermonuclear (type-I) burst was detected,…

High Energy Astrophysical Phenomena · Physics 2015-06-12 J. J. M. in t Zand , D. K. Galloway , H. L. Marshall , D. R. Ballantyne , P. G. Jonker , F. B. S. Paerels , D. M. Palmer , A. Patruno , N. N. Weinberg

Runaway thermonuclear burning of a layer of accumulated fuel on the surface of a compact star provides a brief but intense display of stellar nuclear processes. For neutron stars accreting from a binary companion, these events manifest as…

The millisecond pulsar MAXI J1816-195 was recently discovered in an outburst by MAXI in 2022 May. We study different properties of the pulsar using data from NuSTAR and NICER observations. The unstable burning of accreted material on the…

High Energy Astrophysical Phenomena · Physics 2023-02-28 Manoj Mandal , Sabyasachi Pal , Jaiverdhan Chauhan , Anne Lohfink , Priya Bharali

Recent time-resolved X-ray spectra of a neutron star undergoing a superburst revealed an Fe K line and edge consistent with reprocessing from the surrounding accretion disc. Here, we present models of X-ray reflection from a constant…

Astrophysics · Physics 2009-11-10 D. R. Ballantyne

We perform a set of numerical experiments studying the interaction of Type I X-ray bursts with thin, Shakura-Sunyaev type accretion discs. Careful observations of X-ray spectra during such bursts have hinted at changes occurring in the…

High Energy Astrophysical Phenomena · Physics 2020-01-07 P. Chris Fragile , David R. Ballantyne , Aidan Blankenship

It is commonly assumed that the properties and geometry of the accretion flow in transient low-mass X-ray binaries (LMXBs) significantly change when the X-ray luminosity decays below $\sim 10^{-2}$ of the Eddington limit ($L_{\rm Edd}$).…

High Energy Astrophysical Phenomena · Physics 2020-02-19 J. van den Eijnden , N. Degenaar , R. M. Ludlam , A. S. Parikh , J. M. Miller , R. Wijnands , K. C. Gendreau , Z. Arzoumanian , D. Chakrabarty , P. Bult

Type-I X-ray bursts arise from unstable thermonuclear burning of accreted fuel on the surface of neutron stars. In this chapter we review the fundamental physics of the burning processes, and summarise the observational, numerical, and…

High Energy Astrophysical Phenomena · Physics 2021-01-20 Duncan K. Galloway , Laurens Keek

Type I X-ray bursts from low-mass X-ray binaries result from a thermonuclear runaway in the material accreted onto the neutron star. Although typical recurrence times are a few hours, consistent with theoretical ignition model predictions,…

High Energy Astrophysical Phenomena · Physics 2015-05-19 L. Keek , D. K. Galloway , J. J. M. in 't Zand , A. Heger

Multi-zone models of Type I X-ray bursts are presented that use an adaptive nuclear reaction network of unprecedented size, up to 1300 isotopes. Sequences of up to 15 bursts are followed for two choices of accretion rate and metallicity. At…

Superbursts are thought to be powered by the unstable ignition of a carbon-enriched layer formed from the burning of accreted hydrogen and helium. As shown by Cumming & Bildsten, the short recurrence time hinges on the crust being…

Astrophysics · Physics 2011-07-19 Edward F. Brown