1 Astrophysical Constraints on Dense Matter in Neutron Stars
41
35. D. Blaschke, H. Grigorian, D.N. Voskresensky, Nuclear medium cooling scenario in light of
new Cas A cooling data and the 2M pulsar mass measurements. Phys. Rev. C 88(6), 065805
(2013). https://doi.org/10.1103/PhysRevC.88.065805
36. A.A. Blinova, M. Bachetti, M.M. Romanova, Oscillations of the boundary layer and highfrequency QPOs, in European Physical Journal Web of Conferences, vol. 64 (2014), p. 5009.
https://doi.org/10.1051/epjconf/20136405009
37. S. Bogdanov, The nearest millisecond pulsar revisited with XMM-Newton: improved massradius constraints for PSR J0437-4715. Astrophys. J. 762, 96 (2013). https://doi.org/10.1088/
0004-637X/762/2/96
38. S. Bogdanov, J.E. Grindlay, Deep XMM-Newton spectroscopic and timing observations of
the isolated radio millisecond pulsar PSR J0030+0451. Astrophys. J. 703, 1557–1564 (2009).
https://doi.org/10.1088/0004-637X/703/2/1557
39. S. Bogdanov, J.E. Grindlay, G.B. Rybicki, Thermal X-Rays from millisecond pulsars:
constraining the fundamental properties of neutron stars. Astrophys. J. 689, 407–415 (2008).
https://doi.org/10.1086/592341
40. R. Bondarescu, I. Wasserman, Nonlinear development of the R-mode instability and the
maximum rotation rate of neutron stars. Astrophys. J. 778, 9 (2013). https://doi.org/10.1088/
0004-637X/778/1/9
41. M. Boutelier, D. Barret, M.C. Miller, kHz quasi-periodic oscillations in the low-mass X-ray
binary 4U 0614+09. Mon. Not. R. Astron. Soc. 399, 1901–1906 (2009). https://doi.org/10.
1111/j.1365-2966.2009.15430.x
42. S. Boutloukos, F.K. Lamb, Implications of kHz QPOs for the spin frequencies and magnetic
fields of neutron stars: new results from circinus X-1, in 40 Years of Pulsars: Millisecond
Pulsars, Magnetars and More, ed. by C. Bassa, Z. Wang, A. Cumming, V.M. Kaspi, vol. 983.
American Institute of Physics Conference Series (2008), pp. 533–535. https://doi.org/10.
1063/1.2900291
43. S. Boutloukos, M.C. Miller, F.K. Lamb, Super-eddington fluxes during thermonuclear X-ray
bursts. Astrophys. J. 720, L15–L19 (2010). https://doi.org/10.1088/2041-8205/720/1/L15
44. T.M. Braje, R.W. Romani, K.P. Rauch, Light curves of rapidly rotating neutron stars.
Astrophys. J. 531, 447–452 (2000). https://doi.org/10.1086/308448
45. A.E. Broderick, P. Chang, C. Pfrommer, The cosmological impact of luminous TeV blazars.
I. Implications of plasma instabilities for the intergalactic magnetic field and extragalactic
gamma-ray background. Astrophys. J. 752, 22 (2012). https://doi.org/10.1088/0004-637X/
752/1/22
46. E. Brown, S.S. Gupta, H. Schatz, P. Möller, K.-L. Kratz, Electron capture reactions in
neutron star crusts: deep heating and observational constraints, in International Symposium
on Nuclear Astrophysics - Nuclei in the Cosmos (2006)
47. M. Burgay, N. D’Amico, A. Possenti, R.N. Manchester, A.G. Lyne, B.C. Joshi, M.A.
McLaughlin, M. Kramer, J.M. Sarkissian, F. Camilo, V. Kalogera, C. Kim, D.R. Lorimer, An
increased estimate of the merger rate of double neutron stars from observations of a highly
relativistic system. Nature 426, 531–533 (2003). https://doi.org/10.1038/nature02124
48. V. Burwitz, V.E. Zavlin, R. Neuhäuser, P. Predehl, J. Trümper, A.C. Brinkman, The chandra
LETGS high resolution X-ray spectrum of the isolated neutron star RX J1856.5-3754. Astron.
Astrophys. 379, L35–L38 (2001). https://doi.org/10.1051/0004-6361:20011304
49. E.M. Cackett, J.M. Miller, S. Bhattacharyya, J.E. Grindlay, J. Homan, M. van der Klis, M.C.
Miller, T.E. Strohmayer, R. Wijnands, Relativistic iron emission lines in neutron star lowmass X-ray binaries as probes of neutron star radii. Astrophys. J. 674, 415–420 (2008). https://
doi.org/10.1086/524936
50. C. Cadeau, S.M. Morsink, D. Leahy, S.S. Campbell, Light curves for rapidly rotating
nNeutron stars. Astrophys. J. 654, 458–469 (2007). https://doi.org/10.1086/509103
51. S. Campana, L. Stella, On the bolometric quiescent luminosity and luminosity swing of
black hole candidate and neutron star low-mass X-ray rransients. Astrophys. J. 541, 849–859
(2000). https://doi.org/10.1086/309493
41
35. D. Blaschke, H. Grigorian, D.N. Voskresensky, Nuclear medium cooling scenario in light of
new Cas A cooling data and the 2M pulsar mass measurements. Phys. Rev. C 88(6), 065805
(2013). https://doi.org/10.1103/PhysRevC.88.065805
36. A.A. Blinova, M. Bachetti, M.M. Romanova, Oscillations of the boundary layer and highfrequency QPOs, in European Physical Journal Web of Conferences, vol. 64 (2014), p. 5009.
https://doi.org/10.1051/epjconf/20136405009
37. S. Bogdanov, The nearest millisecond pulsar revisited with XMM-Newton: improved massradius constraints for PSR J0437-4715. Astrophys. J. 762, 96 (2013). https://doi.org/10.1088/
0004-637X/762/2/96
38. S. Bogdanov, J.E. Grindlay, Deep XMM-Newton spectroscopic and timing observations of
the isolated radio millisecond pulsar PSR J0030+0451. Astrophys. J. 703, 1557–1564 (2009).
https://doi.org/10.1088/0004-637X/703/2/1557
39. S. Bogdanov, J.E. Grindlay, G.B. Rybicki, Thermal X-Rays from millisecond pulsars:
constraining the fundamental properties of neutron stars. Astrophys. J. 689, 407–415 (2008).
https://doi.org/10.1086/592341
40. R. Bondarescu, I. Wasserman, Nonlinear development of the R-mode instability and the
maximum rotation rate of neutron stars. Astrophys. J. 778, 9 (2013). https://doi.org/10.1088/
0004-637X/778/1/9
41. M. Boutelier, D. Barret, M.C. Miller, kHz quasi-periodic oscillations in the low-mass X-ray
binary 4U 0614+09. Mon. Not. R. Astron. Soc. 399, 1901–1906 (2009). https://doi.org/10.
1111/j.1365-2966.2009.15430.x
42. S. Boutloukos, F.K. Lamb, Implications of kHz QPOs for the spin frequencies and magnetic
fields of neutron stars: new results from circinus X-1, in 40 Years of Pulsars: Millisecond
Pulsars, Magnetars and More, ed. by C. Bassa, Z. Wang, A. Cumming, V.M. Kaspi, vol. 983.
American Institute of Physics Conference Series (2008), pp. 533–535. https://doi.org/10.
1063/1.2900291
43. S. Boutloukos, M.C. Miller, F.K. Lamb, Super-eddington fluxes during thermonuclear X-ray
bursts. Astrophys. J. 720, L15–L19 (2010). https://doi.org/10.1088/2041-8205/720/1/L15
44. T.M. Braje, R.W. Romani, K.P. Rauch, Light curves of rapidly rotating neutron stars.
Astrophys. J. 531, 447–452 (2000). https://doi.org/10.1086/308448
45. A.E. Broderick, P. Chang, C. Pfrommer, The cosmological impact of luminous TeV blazars.
I. Implications of plasma instabilities for the intergalactic magnetic field and extragalactic
gamma-ray background. Astrophys. J. 752, 22 (2012). https://doi.org/10.1088/0004-637X/
752/1/22
46. E. Brown, S.S. Gupta, H. Schatz, P. Möller, K.-L. Kratz, Electron capture reactions in
neutron star crusts: deep heating and observational constraints, in International Symposium
on Nuclear Astrophysics - Nuclei in the Cosmos (2006)
47. M. Burgay, N. D’Amico, A. Possenti, R.N. Manchester, A.G. Lyne, B.C. Joshi, M.A.
McLaughlin, M. Kramer, J.M. Sarkissian, F. Camilo, V. Kalogera, C. Kim, D.R. Lorimer, An
increased estimate of the merger rate of double neutron stars from observations of a highly
relativistic system. Nature 426, 531–533 (2003). https://doi.org/10.1038/nature02124
48. V. Burwitz, V.E. Zavlin, R. Neuhäuser, P. Predehl, J. Trümper, A.C. Brinkman, The chandra
LETGS high resolution X-ray spectrum of the isolated neutron star RX J1856.5-3754. Astron.
Astrophys. 379, L35–L38 (2001). https://doi.org/10.1051/0004-6361:20011304
49. E.M. Cackett, J.M. Miller, S. Bhattacharyya, J.E. Grindlay, J. Homan, M. van der Klis, M.C.
Miller, T.E. Strohmayer, R. Wijnands, Relativistic iron emission lines in neutron star lowmass X-ray binaries as probes of neutron star radii. Astrophys. J. 674, 415–420 (2008). https://
doi.org/10.1086/524936
50. C. Cadeau, S.M. Morsink, D. Leahy, S.S. Campbell, Light curves for rapidly rotating
nNeutron stars. Astrophys. J. 654, 458–469 (2007). https://doi.org/10.1086/509103
51. S. Campana, L. Stella, On the bolometric quiescent luminosity and luminosity swing of
black hole candidate and neutron star low-mass X-ray rransients. Astrophys. J. 541, 849–859
(2000). https://doi.org/10.1086/309493
