Discovery of 59ms Pulsations from 1RXS J141256.0+792204 (Calvera)
S. Zane, F. Haberl, G.L. Israel, A. Pellizzoni, M. Burgay, R.P., Mignani, R. Turolla, A. Possenti, P. Esposito, D. Champion, R.P. Eatough, E., Barr, M. Kramer

TL;DR
This study reports the discovery of 59 ms pulsations from the neutron star candidate Calvera, confirming its nature and providing insights into its emission properties across X-ray and gamma-ray wavelengths.
Contribution
The paper presents the first detection of gamma-ray pulsations from Calvera, establishing it as a potential member of a new class of neutron stars with multi-wavelength emission.
Findings
Pulsations detected at 59.2 ms with high significance.
Gamma-ray pulsations coincident with X-ray period found.
Upper limit on period derivative constrains magnetic field.
Abstract
We report on a multi-wavelength study of the compact object candidate 1RXS J141256.0+792204 (Calvera). Calvera was observed in the X-rays with XMM/EPIC twice for a total exposure time of ~50 ks. The source spectrum is thermal and well reproduced by a two component model composed of either two hydrogen atmosphere models, or two blackbodies (kT_1~ 55/150 eV, kT_2~ 80/250 eV, respectively, as measured at infinity). Evidence was found for an absorption feature at ~0.65 keV; no power-law high-energy tail is statistically required. Using pn and MOS data we discovered pulsations in the X-ray emission at a period P=59.2 ms. The detection is highly significant (> 11 sigma), and unambiguously confirms the neutron star nature of Calvera. The pulse profile is nearly sinusoidal, with a pulsed fraction of ~18%. We looked for the timing signature of Calvera in the Fermi Large Area Telescope (LAT)…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Pulsars and Gravitational Waves Research · Astrophysics and Cosmic Phenomena
