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A possible planet candidate in an external galaxy detected through X-ray transit

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A possible planet candidate in an external galaxy detected through X-ray transit

  • 1.

    Imara, N. & Di Stefano, R. Searching for exoplanets around X-ray binaries with accreting white dwarfs, neutron stars, and black holes. Astrophys. J. 859, 40 (2018).

    ADS  Article  Google Scholar 

  • 2.

    Jaodand, A., Hessels, J. W. T. & Archibald, A. A decade of transitional millisecond pulsars. In Proc. International Astronomical Union Symposium 337 Vol. 13 (eds Weltevrede, P. et al.) 47–51 (Cambridge Univ. Press, 2018)..

  • 3.

    Wolszczan, A. Discovery of pulsar planets. New Astron. Rev. 56, 2–8 (2012).

    ADS  Article  Google Scholar 

  • 4.

    Lorimer, D. Binary and millisecond pulsars. Living Rev. Relativ. 11, 8 (2008).

    ADS  Article  Google Scholar 

  • 5.

    Ford, E. B., Joshi, K. J., Rasio, F. A. & Zabarsky, B. Theoretical implications of the PSR B1620-26 triple system and its planet. Astrophys. J. 528, 336–350 (2000).

    ADS  Article  Google Scholar 

  • 6.

    Di Stefano, R. & Kong, A. K. H. Luminous supersoft X-ray sources in external galaxies. Astrophys. J. 592, 884–899 (2003).

    ADS  Article  Google Scholar 

  • 7.

    Urquhart, R. & Soria, R. Optically thick outflows in ultraluminous supersoft sources. Mon. Not. R. Astron. Soc. 456, 1859–1880 (2016).

    ADS  Article  Google Scholar 

  • 8.

    Terashima, Y., Inoue, H. & Wilson, A. S. Hubble Space Telescope identification of the optical counterparts of ultraluminous X-ray sources in M51. Astrophys. J. 645, 264–270 (2006).

    ADS  Article  Google Scholar 

  • 9.

    Rappaport, S. A., Podsiadlowski, P. & Pfahl, E. Stellar-mass black hole binaries as ultraluminous X-ray sources. Mon. Not. R. Astron. Soc 356, 401–414 (2005).

    ADS  Article  Google Scholar 

  • 10.

    Parmar, A. N., White, N. E., Giommi, P. & Gottwald, M. The discovery of 3.8 hour periodic intensity dips and eclipses from the transient low-mass X-ray binary EXO 0748-676. Astrophys. J. 308, 199–212 (1986).

    ADS  Article  Google Scholar 

  • 11.

    Gambino, A. et al. Updating the orbital ephemeris of the dipping source XB 1254-690 and the distance to the source. Res. Astron. Astrophys. 17, 108 (2017).

    ADS  Article  Google Scholar 

  • 12.

    Church, M. J. et al. Progressive covering in dipping and Comptonization in the spectrum of XB 1916-053 from the BeppoSAX observation. Astron. Astrophys. 338, 556–562 (1998).

    ADS  Google Scholar 

  • 13.

    Humphrey, P. J., Church, M. J., Baucińska-Church, M. & Parmar, A. N. Spectral evolution during dipping in X 1624-490 from the BeppoSAX observation. AIP Conf. Proc. 599, 658–661 (2001).

    ADS  Article  Google Scholar 

  • 14.

    Park, T. et al. Bayesian estimation of hardness ratios: modeling and computations. Astrophys. J. 652, 610–628 (2006).

    ADS  Article  Google Scholar 

  • 15.

    Greiner, J. & Di Stefano, R. X-ray off states and optical variability in CAL 83. Astron. Astrophys. 387, 944–954 (2002).

    ADS  Article  Google Scholar 

  • 16.

    Bayliss, D. et al. NGTS-1b: a hot Jupiter transiting an M-dwarf. Mon. Not. R. Astron. Soc. 475, 4467–4475 (2018).

    ADS  Article  Google Scholar 

  • 17.

    Barffe, I., Chabrier, G., Barman, T. S., Allard, F. & Hauschildt, P. H. Evolutionary models for cool brown dwarfs and extrasolar giant planets. The case of HD 209458. Astron. Astrophys. 402, 701–712 (2003).

    ADS  Article  Google Scholar 

  • 18.

    Stevens, D. J. et al. An extreme-mass ratio, short-period eclipsing binary consisting of a B dwarf primary and a pre-main-sequence M star companion discovered by KELT. Mon. Not. R. Astron. Soc. 499, 3775–3791 (2020).

    ADS  Article  Google Scholar 

  • 19.

    Triaud, A. H. M. J. et al. The EBLM Project. IV. Spectroscopic orbits of over 100 eclipsing M dwarfs masquerading as transiting hot Jupiters. Astron. Astrophys. 608, A129 (2017).

    Article  Google Scholar 

  • 20.

    Carmichael, T. W., Latham, D. W. & Vanderburg, A. M. New substellar discoveries from Kepler and K2: is there a brown dwarf desert? Astron. J. 158, 38 (2019).

    ADS  Article  Google Scholar 

  • 21.

    Owen, J. E. & Campos Estrada, B. Testing exoplanet evaporation with multitransiting systems. Mon. Not. R. Astron. Soc. 491, 5287–5297 (2020).

    ADS  Article  Google Scholar 

  • 22.

    Poppenhaeger, K., Ketzer, L. & Mallonn, M. X-ray irradiation and evaporation of the four young planets around V1298 Tau. Mon. Not. R. Astron. Soc. 500, 4560–4572 (2021).

    ADS  Article  Google Scholar 

  • 23.

    Sanz-Forcada, J., Desidera, S. & Micela, G. Effects of X-ray and extreme UV radiation on circumbinary planets. Astron. Astrophys. 570, A50 (2014).

    ADS  Article  Google Scholar 

  • 24.

    Fruscione, A. et al. CIAO: Chandra’s data analysis system. In Proc. Society of Photo-Optical Instrumentation Engineers (SPIE) Conference on Astronomical Telescopes and Instrumentation Vol. 6270 (eds Silva, D. R. & Doxsey, R. E.) (SPIE, 2006).

  • 25.

    Blackburn, J. K. FTOOLS: a FITS data processing and analysis software package. ASP Conf. Ser. 77, 367–370 (1995).

    ADS  Google Scholar 

  • 26.

    Wang, S., Soria, R., Urquhart, R. & Liu, J. Discovery of two eclipsing X-ray binaries in M 51. Mon. Not. R. Astron. Soc. 477, 3623–3645 (2018).

    ADS  Article  Google Scholar 

  • 27.

    Urquhart, R. & Soria, R. Two eclipsing ultraluminous X-Ray sources in M51. Astrophys. J. 831, 56 (2016).

    ADS  Article  Google Scholar 

  • 28.

    Irwin, J. et al. Ultraluminous X-ray bursts in two ultracompact companions to nearby elliptical galaxies. Nature 538, 356–358 (2016).

    ADS  Article  Google Scholar 

  • 29.

    Gelman, A. et al. Bayasian Data Analysis 3rd edn (CRC Press, 2013).

  • 30.

    Kaastra, J. S. On the use of C-stat in testing models for X-ray spectra. Astron. Astrophys. 605, A51 (2017).

    ADS  Article  Google Scholar 

  • 31.

    Einstein, A. Lens-like action of a star by the deviation of light in a gravitational field. Science 84, 506–507 (1936).

    ADS  Article  Google Scholar 

  • 32.

    Eggleton, P. P. Approximations to the radii of Roche lobes. Astrophys. J. 268, 368–369 (1983).

    ADS  Article  Google Scholar 

  • 33.

    Abbott, B. P. et al. Astrophysical implications of the binary black hole merger GW150914. Astrophys. J. Lett. 818, L22 (2016).

    ADS  Article  Google Scholar 

  • 34.

    Foucart, F. & Lai, D. Evolution of linear warps in accretion discs and applications to protoplanetary discs in binaries. Mon. Not. R. Astron. Soc. 445, 1731–1744 (2014).

    ADS  Article  Google Scholar 

  • 35.

    Orosz, J. A. et al. Discovery of a third transiting planet in the Kepler-47 circumbinary system. Astron. J. 157, 174 (2019).

    ADS  Article  Google Scholar 

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