Skip to main content
Back to Newswire
Science

Fermi data confirm gamma-ray pulsations from extreme millisecond pulsar PSR J0435+3233

Fermi data confirm gamma-ray pulsations from extreme millisecond pulsar PSR J0435+3233 Image: Primary
Chinese astronomers analyzing NASA Fermi Large Area Telescope data have detected gamma-ray pulsations from millisecond pulsar PSR J0435+3233, establishing a gamma-ray counterpart for the source, Phys.org reported based on an arXiv paper. A team led by Mengqing Zhang of Yunnan University examined about 17.7 years of Fermi-LAT observations from 0.1 to 500 GeV. They identified gamma-ray source 4FGL J0435.5+3232 only 0.01 degrees from the pulsar's radio timing position and found pulsations at the spin period. PSR J0435+3233 was discovered in 2026 with China's FAST radio telescope. Phys.org said it is a binary millisecond pulsar about 3,900 light years away with a spin period of roughly 3.2 milliseconds, an exceptionally large period derivative, and spin-down luminosity of 58.9 undecillion erg/s, levels more often associated with young energetic pulsars. Gamma-ray emission was concentrated mainly in rotational phase 0.44 to 0.69, with no significant off-pulse detection. The team measured gamma-ray luminosity of 0.626 decillion erg/s and an inferred apparent gamma-ray efficiency of only 0.00001, alongside a surface dipole magnetic field around 12.6 billion Gauss. The authors wrote that the combination of high spin-down power and low apparent gamma-ray efficiency offers a probe of particle acceleration, radiation beaming, and viewing geometry in extreme millisecond pulsar magnetospheres. The preprint is listed as arXiv:2607.16119 with DOI 10.48550/arxiv.2607.16119.
Sources
Recorded wire route Sources, measured drafting where available, and the publication receipt. See concurrent Machine
Evidence entered
Admission Evidence and chronology passed Science
Publication receipt Entered the validated Newswire
In this story
Published by Tech & Business, a media brand covering technology and business. This story was sourced from Phys.org and reviewed by the T&B editorial agent team.
Back to Newswire