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Related papers: A High Braking Index for a Pulsar

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Recent timing observation constrained the braking index of the X-ray pulsar PSR J1640-4631 to be $n=3.15\pm0.03$, which is the highest value of all pulsars with measured braking indices so far. In this Letter, we investigate whether pulsar…

High Energy Astrophysical Phenomena · Physics 2016-10-24 Wen-Cong Chen

The recently discovered rotationally powered pulsar PSR J1640-4631 is the first to have a braking index measured, with high enough precision, that is greater than three. An inclined magnetic rotator in vacuum or plasma would be subject not…

High Energy Astrophysical Phenomena · Physics 2016-05-25 Kazım Yavuz Ekşi , Ceyhun Andaç , Sercan Çıkıntoğlu , Erbil Gügercinoğlu , Armin Vahdat Motlagh , Bülent Kızıltan

The X-ray Pulsar PSR J1811-1925 in the historic supernova remnant G11.2-0.3 has a characteristic age over 10 times the age of the remnant. This likely implies that its current spin period, 65 ms, is close to its birth spin period.…

Astrophysics · Physics 2009-11-07 F. P. Gavriil , V. M. Kaspi , M. S. E. Roberts

Braking indices of pulsars present a scientific challenge as their theoretical calculation is still an open problem. In this paper we report results of a study regarding such calculation which adapts the canonical model (which admits that…

High Energy Astrophysical Phenomena · Physics 2016-07-22 N. S. Magalhaes , A. S. Okada , C. Frajuca

Recently, a braking index for the pulsar PSR J1640-4631 has been measured. With a braking index of $n = 3.15 \pm 0.03$, this pulsar has the highest braking index ever measured. As it is well known, a pure magnetic dipole brake yields $n =…

High Energy Astrophysical Phenomena · Physics 2016-07-18 José C. N. de Araujo , Jaziel G. Coelho , Cesar A. Costa

In this work, we interpreted the high braking index of PSR J1640$-$4631 with a combination of the magneto-dipole radiation and dipole magnetic field decay models. By introducing a mean rotation energy conversion coefficient…

High Energy Astrophysical Phenomena · Physics 2017-11-10 Zhi-Fu Gao , Na Wang , Hao Shan , Xiang-Dong Li , Wei Wang

We present the first phase-coherent measurement of a braking index for the young, energetic rotation-powered pulsar PSR J1846-0258. This 324 ms pulsar is located at the center of the supernova remnant Kes 75 and has a characteristic age of…

Astrophysics · Physics 2009-11-11 Margaret A. Livingstone , Victoria M. Kaspi , E. V. Gotthelf , Lucien Kuiper

Pulsar braking indices offer insight into the physics that underlies pulsar spin-down. Only five braking indices have been measured via phase-coherent timing; all measured values are less than 3, the value expected from magnetic dipole…

We report the discovery and timing measurements of PSR J1208-6238, a young and highly magnetized gamma-ray pulsar, with a spin period of 440 ms. The pulsar was discovered in gamma-ray photon data from the Fermi Large Area Telescope (LAT)…

We present an updated timing solution for the young, energetic pulsar PSR B1509-58 based on 21.3 years of radio timing data and 7.6 years of X-ray timing data. No glitches have occurred in this time span, in contrast to other well-studied…

PSR J1846-0258 is an object which straddles the boundary between magnetars and rotation powered pulsars. Though behaving for many years as a rotation-powered pulsar, in 2006, it exhibited distinctly magnetar-like behavior - emitting several…

High Energy Astrophysical Phenomena · Physics 2015-09-16 R. F. Archibald , V. M. Kaspi , A. P. Beardmore , N. Gehrels , J. A. Kennea

We present a new phase-coherent timing analysis for the young, energetic pulsar PSR B0540-69 using 7.6 yr of data from the Rossi X-Ray Timing Explorer. We measure the braking index, n=2.140+/-0.009, and discuss our measurement in the…

Astrophysics · Physics 2009-11-13 Margaret A. Livingstone , Victoria M. Kaspi , Fotis P. Gavriil

PSR J1734-3333 is a radio pulsar rotating with a period P=1.17 s and slowing down with a period derivative Pdot=2.28 x 10^{-12}, the third largest among rotation-powered pulsars. These properties are midway between those of normal…

High Energy Astrophysical Phenomena · Physics 2015-05-30 Cristobal M. Espinoza , Andrew Lyne , Michael Kramer , Richard N. Manchester , Victoria Kaspi

The braking index, $n$, of a pulsar is a measure of its angular momentum loss and the value it takes corresponds to different spin-down mechanisms. For a pulsar spinning down due to gravitational wave emission from the principal mass…

High Energy Astrophysical Phenomena · Physics 2025-03-27 A. L. Hewitt , M. Pitkin , I. M. Hook

Using the standard equation for the slowdown of a neutron star, we derive a formula for the braking index via integration rather than the conventional differentiation. The new formula negates the need to measure the second time derivative…

Astrophysics · Physics 2009-10-31 Simon Johnston , David Galloway

We report the results of a 16-month monitoring campaign using the Swift satellite of PSR B0540-69, a young pulsar in the Large Magellanic Cloud. Phase connection was maintained throughout the campaign so that a reliable ephemeris could be…

High Energy Astrophysical Phenomena · Physics 2016-08-31 F. E. Marshall , L. Guillemot , A. K. Harding , P. Martin , D. A. Smith

Measuring a pulsar's rotational evolution is crucial to understanding the nature of the pulsar. Here we provide updated timing models for the rotational evolution of six pulsars, five of which are rotation phase-connected using primarily…

The way pulsars spin down is not understood in detail, but a number of possible physical mechanisms produce a spin-down rate that scales as a power of the rotation rate ($\dot\nu\propto-\nu^n$), with the power-law index $n$ called the…

Recent timing observation provides an intriguing result for the braking index of the X-ray pulsar PSR J1640-4631, which has a measured braking index $n=3.15\pm0.03$. The decrease of the inclination angle between between the spin axis and…

High Energy Astrophysical Phenomena · Physics 2020-01-08 Hui Shi , Hong-Wei Hu , Wen-Cong Chen

Recent timing observation reported that the radio pulsar PSR J1734 - 3333 with a rotating period $P=1.17~\rm s$ is slowing down with a period derivative $\dot{P}=2.28\times 10^{-12}\rm s\,s^{-1}$. Its derived braking index $n=0.9 \pm 0.2$…

High Energy Astrophysical Phenomena · Physics 2015-11-11 Wen-Cong Chen , Xiang-Dong Li
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