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Tight constraint on photon mass from pulsar spindown

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abstract

Pulsars are magnetized rotating compact objects. They spin down due to magnetic dipole radiation and wind emission. If photon has a nonzero mass, the spin down rate would be smaller than the zero mass case. We show that an upper limit of the photon mass, i.e. $m_\gamma\lesssim h/Pc^2$, may be placed if a pulsar with period $P$ is observed to spin down. Recently, a white dwarf (WD) --- M dwarf binary, AR Scorpii was discovered to emit pulsed broadband emission with pulses. The spin-down luminosity of the WD can comfortably power the non-thermal radiation from the system. Applying our results to the WD pulsar with $P=117~\rm{s}$, we obtain a stringent upper limit of the photon mass between $m_\gamma<6.3\times10^{-50}~\rm{g}$ assuming a vacuum dipole spindown, and $m_\gamma<9.6\times10^{-50}~\rm{g}$ assuming a spindown due to a fully developed pulsar wind.

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representative citing papers

Bounding the photon mass with gravitationally lensed fast radio bursts

astro-ph.HE · 2024-12-13 · conditional · novelty 6.0

Using the time delay and flux ratio of the lensed FRB candidate FRB 20190308C, the authors derive an upper bound on the photon mass of 5.3e-42 kg for a lens shear of 0.01, and between 2.4e-42 and 2.1e-41 kg over the allowed shear range.

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  • Bounding the photon mass with gravitationally lensed fast radio bursts astro-ph.HE · 2024-12-13 · conditional · none · ref 40 · internal anchor

    Using the time delay and flux ratio of the lensed FRB candidate FRB 20190308C, the authors derive an upper bound on the photon mass of 5.3e-42 kg for a lens shear of 0.01, and between 2.4e-42 and 2.1e-41 kg over the allowed shear range.