Rapid Orbital Decay in the 12.75-Minute Binary White Dwarf J0651+2844

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Date

2012-10

Authors

Hermes, J. J.
Kilic, Mukremin
Brown, Warren R.
Winget, D. E.
Prieto, Carlos Allende
Gianninas, A.
Mukadam, Anjum S.
Cabrera-Lavers, Antonio
Kenyon, Scott J.

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Abstract

We report the detection of orbital decay in the 12.75-minute, detached binary white dwarf (WD) SDSS J065133.338+284423.37 (hereafter J0651). Our photometric observations over a 13 month baseline constrain the orbital period to 765.206543(55) s and indicate that the orbit is decreasing at a rate of (-9.8 +/- 2.8) x 10(-12) s s(-1) (or -0.31 +/- 0.09 ms yr(-1)). We revise the system parameters based on our new photometric and spectroscopic observations: J0651 contains two WDs with M-1 = 0.26 +/- 0.04 M-circle dot and M-2 = 0.50 +/- 0.04 M-circle dot. General relativity predicts orbital decay due to gravitational wave radiation of (-8.2 +/- 1.7) x 10(-12) s s(-1) (or -0.26 +/- 0.05 ms yr(-1)). Our observed rate of orbital decay is consistent with this expectation. J0651 is currently the second-loudest gravitational wave source known in the milli-Hertz range and the loudest non-interacting binary, which makes it an excellent verification source for future missions aimed at directly detecting gravitational waves. Our work establishes the feasibility of monitoring this system's orbital period decay at optical wavelengths.

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Hermes, J. J., Mukremin Kilic, Warren R. Brown, D. E. Winget, Carlos Allende Prieto, A. Gianninas, Anjum S. Mukadam, Antonio Cabrera-Lavers, and Scott J. Kenyon. "Rapid orbital decay in the 12.75-minute binary white dwarf J0651+ 2844." The Astrophysical Journal Letters, Vol. 757, No. 2 (Oct., 2012): L21.