Research Article

The Period Clustering of Magnetars and X-ray Dim Isolated Neutron Stars

Volume: 4 Number: 1 June 17, 2026
EN

The Period Clustering of Magnetars and X-ray Dim Isolated Neutron Stars

Abstract

The spin periods of magnetars and X-ray dim isolated neutron stars (XDINS) cluster within a remarkably narrow range. Using the current sample of 30 magnetars with measured periods (ranging from 0.33 to 11.78 s) and 8 XDINS (ranging from 3.45 to 12.76 s), we utilize the point-likelihood technique to constrain the birth and final periods of these sources, assuming a steady-state population. Employing a general braking law characterized by a constant braking index 𝑛, we find that for 𝑛 > 2 the final (cut-off) period of magnetars is constrained to 𝑃f ≃ 11.8 − 12.0 s and XDINS to 𝑃f ≃ 12.8 − 14.9 s, at the 95 per cent confidence level, while the birth periods remain largely unconstrained for dipole spin-down (𝑛 = 3) as in earlier work. The slight increase in the upper cutoff from ∼12to∼15sovertwodecadesofdiscoveries of new sources yielding a threefold increase in the known magnetar population and the extension of the minimum period to ∼ 0.33 s strongly support a physical origin for this clustering. We discuss this result in the context of magnetic-field-decay models and fallback-disc torque-equilibrium scenarios. The combined magnetar and XDINS sample (38 sources) yields the tightest constraints on 𝑃f ≃ 12.8 − 12.9 s, for 𝑛 = 3, suggesting possible evolutionary connections between these populations and pointing toward a common physical mechanism that terminates the observable phase of these neutron stars at periods near 15 s.

Keywords

References

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Details

Primary Language

English

Subjects

Astronomical Sciences (Other)

Journal Section

Research Article

Publication Date

June 17, 2026

Submission Date

December 20, 2025

Acceptance Date

March 10, 2026

Published in Issue

Year 2026 Volume: 4 Number: 1

APA
Ekşi, Y. (2026). The Period Clustering of Magnetars and X-ray Dim Isolated Neutron Stars. Physics and Astronomy Reports, 4(1), 18-28. https://doi.org/10.26650/PAR.2026.00001
AMA
1.Ekşi Y. The Period Clustering of Magnetars and X-ray Dim Isolated Neutron Stars. Physics and Astronomy Reports. 2026;4(1):18-28. doi:10.26650/PAR.2026.00001
Chicago
Ekşi, Yavuz. 2026. “The Period Clustering of Magnetars and X-Ray Dim Isolated Neutron Stars”. Physics and Astronomy Reports 4 (1): 18-28. https://doi.org/10.26650/PAR.2026.00001.
EndNote
Ekşi Y (June 1, 2026) The Period Clustering of Magnetars and X-ray Dim Isolated Neutron Stars. Physics and Astronomy Reports 4 1 18–28.
IEEE
[1]Y. Ekşi, “The Period Clustering of Magnetars and X-ray Dim Isolated Neutron Stars”, Physics and Astronomy Reports, vol. 4, no. 1, pp. 18–28, June 2026, doi: 10.26650/PAR.2026.00001.
ISNAD
Ekşi, Yavuz. “The Period Clustering of Magnetars and X-Ray Dim Isolated Neutron Stars”. Physics and Astronomy Reports 4/1 (June 1, 2026): 18-28. https://doi.org/10.26650/PAR.2026.00001.
JAMA
1.Ekşi Y. The Period Clustering of Magnetars and X-ray Dim Isolated Neutron Stars. Physics and Astronomy Reports. 2026;4:18–28.
MLA
Ekşi, Yavuz. “The Period Clustering of Magnetars and X-Ray Dim Isolated Neutron Stars”. Physics and Astronomy Reports, vol. 4, no. 1, June 2026, pp. 18-28, doi:10.26650/PAR.2026.00001.
Vancouver
1.Yavuz Ekşi. The Period Clustering of Magnetars and X-ray Dim Isolated Neutron Stars. Physics and Astronomy Reports. 2026 Jun. 1;4(1):18-2. doi:10.26650/PAR.2026.00001