Evidence for crust cooling in the transiently accreting 11-Hz X-ray pulsar in the globular cluster Terzan 5
arXiv:1107.5317 · doi:10.1111/j.1745-3933.2011.01164.x
Abstract
The temporal heating and subsequent cooling of the crusts of transiently accreting neutron stars carries unique information about their structure and a variety of nuclear reaction processes. We report on a new Chandra Director's Discretionary Time observation of the globular cluster Terzan 5, aimed to monitor the transiently accreting 11-Hz X-ray pulsar IGR J17480-2446 after the cessation of its recent 10-week long accretion outburst. During the observation, which was performed ~125 days into quiescence, the source displays a thermal spectrum that fits to a neutron star atmosphere model with a temperature for an observer at infinity of kT~92 eV. This is ~10% lower than found ~75 days earlier, yet ~20% higher than the quiescent base level measured prior to the recent outburst. This can be interpreted as cooling of the accretion-heated neutron star crust, and implies that crust cooling is observable after short accretion episodes. Comparison with neutron star thermal evolution simulations indicates that substantial heat must be released at shallow depth inside the neutron star, which is not accounted for in current nuclear heating models.
5 pages, 3 figures, 1 table. Minor changes according to referee report. MNRAS Letters in press
References in corpus (18)
- The Breaking Strain of Neutron Star Crust and Gravitational Waves
- Models of crustal heating in accreting neutron stars
- Six new candidate ultracompact X-ray binaries
- Faint X-ray Sources in the Globular Cluster Terzan 5
- Cooling of the crust in the neutron star low-mass X-ray binary MXB 1659-29
- Distances of the bulge globular clusters Terzan 5, Liller 1, UKS 1 and Terzan 4 based on HST NICMOS photometry
- Quiescent X-ray emission from Cen X-4: a variable thermal component
- The Variable Quiescent X-ray Emission of the Neutron Star Transient XTE J1701-462
- Further X-ray observations of EXO 0748-676 in quiescence: evidence for a cooling neutron star crust
- Fusion of neutron rich oxygen isotopes in the crust of accreting neutron stars
- The spin and orbit of the newly discovered pulsar IGR J17480-2446
- Continued cooling of the crust in the neutron star low-mass X-ray binary KS 1731-260
- XMM-Newton observations of the low-mass X-ray binary EXO 0748-676 in quiescence
- Thermal conductivity and phase separation of the crust of accreting neutron stars
- Pulsar timing array observations of gravitational wave source timing parallax
- On the cooling tails of thermonuclear X-ray bursts: the IGR J17480-2446 link
- The soft quiescent spectrum of the transiently accreting 11 Hz X-ray pulsar in the globular cluster Terzan 5
- The accretion-heated crust of the transiently accreting 11 Hz X-ray pulsar in the globular cluster Terzan 5
Cited by in corpus (35)
- Surface Emission from Neutron Stars and Implications for the Physics of their Interiors
- Cooling of Accretion-Heated Neutron Stars
- Millihertz quasi-periodic oscillations and thermonuclear bursts from Terzan 5: A showcase of burning regimes
- Testing the deep-crustal heating model using quiescent neutron-star very-faint X-ray transients and the possibility of partially accreted crusts in accreting neutron stars
- Discovery of the Third Transient X-ray Binary in the Galactic Globular Cluster Terzan 5
- A strong shallow heat source in the accreting neutron star MAXI J0556-332
- Nuclear Reactions in the Crusts of Accreting Neutron Stars
- A strongly heated neutron star in the transient Z source MAXI J0556-332
- Quiescent thermal emission from neutron stars in LMXBs
- Strong X-ray variability in the quiescent state of the neutron star low-mass X-ray binary EXO 1745-248
- Probing the Crust of the Neutron Star in EXO 0748-676
- Low-Mass X-ray Binaries
- A change in the quiescent X-ray spectrum of the neutron star low-mass X-ray binary MXB 1659-29
- Daily, multiwavelength Swift monitoring of the neutron star low-mass X-ray binary Cen X-4: evidence for accretion and reprocessing during quiescence
- A direct measurement of the heat release in the outer crust of the transiently accreting neutron star XTE J1709-267
- Continued Neutron Star Crust Cooling of the 11 Hz X-Ray Pulsar in Terzan 5: A Challenge to Heating and Cooling Models?
- Neutron star crust cooling in KS 1731-260: the influence of accretion outburst variability on the crustal temperature evolution
- The MAVERIC Survey: Chandra/ACIS Catalog of Faint X-ray sources in 38 Galactic globular clusters
- Constraining the properties of neutron star crusts with the transient low-mass X-ray binary Aql X-1
- The radius of the quiescent neutron star in the globular cluster M13
- The thermal state of KS 1731-260 after 14.5 years in quiescence
- A cooling neutron star crust after recurrent outbursts: Modelling the accretion outburst history of Aql X-1
- A cold neutron star in the transient low-mass X-ray binary HETE J1900.1-2455 after 10 years of active accretion
- The quiescent X-ray properties of the accreting millisecond X-ray pulsar and eclipsing binary Swift J1749.4-2807
- Continued cooling of the accretion-heated neutron star crust in the X-ray transient IGR J17480-2446 located in the globular cluster Terzan 5
- Investigating Variability of Quiescent Neutron Stars in the Globular Clusters NGC 6440 and Terzan 5
- Crust cooling of the neutron star in Aql X-1: Different depth and magnitude of shallow heating during similar accretion outbursts
- The INTEGRAL view of the pulsating hard X-ray sky: from accreting and transitional millisecond pulsars to rotation-powered pulsars and magnetars
- Two new bursting neutron star low-mass X-ray binaries: Swift J185003.2-005627 and Swift J1922.7-1716
- Constraining the properties of dense neutron star cores: The case of the low-mass X-ray binary HETE J1900.1-2455
- Long-term temperature evolution of neutron stars undergoing episodic accretion outbursts
- Variable quiescent state for the neutron-star X-ray transient SAX J1750.8-2900: not such a hot neutron star after all?
- The Impact of Neutron Transfer Reactions on Heating and Cooling of Accreted Neutron Star Crusts
- Unexpected late-time temperature increase observed in two neutron star crust cooling sources -- XTE~J1701-462 and EXO~0748-676
- A window into the neutron star: Modelling the cooling of accretion heated neutron star crusts