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Lense-Thirring frame dragging induced by a fast-rotating white dwarf in a binary pulsar system

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arxiv 2001.11405 v1 pith:FZKCZJPR submitted 2020-01-30 astro-ph.HE astro-ph.SRgr-qc

Lense-Thirring frame dragging induced by a fast-rotating white dwarf in a binary pulsar system

classification astro-ph.HE astro-ph.SRgr-qc
keywords binarypulsarlense-thirringdwarfevolutionprecessionradiosystem
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Radio pulsars in short-period eccentric binary orbits can be used to study both gravitational dynamics and binary evolution. The binary system containing PSR J1141$-$6545 includes a massive white dwarf (WD) companion that formed before the gravitationally bound young radio pulsar. We observe a temporal evolution of the orbital inclination of this pulsar that we infer is caused by a combination of a Newtonian quadrupole moment and Lense-Thirring precession of the orbit resulting from rapid rotation of the WD. Lense-Thirring precession, an effect of relativistic frame-dragging, is a prediction of general relativity. This detection is consistent with the evolutionary scenario in which the WD accreted matter from the pulsar progenitor, spinning up the WD to a period $< 200$ seconds.

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