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Literature Catalog: White Dwarf / Neutron Star / Black Hole Mergers: 3D Hydrodynamic Calculations

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Last updated Mar 26, 2005.

S. Ayal, T. Piran, R. Oechslin, M.B. Davies, and S. Rosswog, Post-Newtonian Smoothed Particle Hydrodynamics, Astrophys. J. 550, 846 (2001).

T.W. Baumgarte and S.L. Shapiro, Numerical relativity and compact binaries Physics Reports 376, 41 (2003).

A.C. Calder and E.Y.M. Wang, Numerical Models of Binary Neutron Star System Mergers. II. Coalescing Models with Post-Newtonian Radiation Reaction Forces, Astrophys. J. 570, 303 (2002).

M.B. Davies, A.J. Levan, and A.R. King, The ultimate outcome of black hole-neutron star mergers, Monthly Notices of the RAS 356, 54 (2005).

M.B. Davies, W. Benz, T. Piran, and F.-K. Thielemann, Merging neutron stars. 1. Initial results for coalescence of noncorotating systems, Astrophys. J. 431, 742 (1994)

M.D. Duez, P. Marronetti, S.L. Shapiro, and T.W. Baumgarte, Hydrodynamic simulations in 3 + 1 general relativity, Phys. Rev. D 67, 024004 (2003).

J.A. Faber, P. Grandclement, and F.A. Rasio, Mergers of Irrotational Neutron Star Binaries in Conformally Flat Gravity, to appear in Phys. Rev. D (2004).

J.A. Faber and F.A. Rasio, Post-Newtonian SPH calculations of binary neutron star coalescence. III. Irrotational systems and gravitational wave spectra, Phys. Rev. D 65, 084042 (2002).

J.A. Faber, F.A. Rasio, and J.B. Manor, Post-Newtonian SPH calculations of binary neutron star coalescence. II. Binary mass ratio, equation of state, and spin dependence, Phys. Rev. D 63, 044012 (2001).

J.A. Faber and F.A. Rasio, Post-Newtonian SPH calculations of binary neutron star coalescence: Method and first results, Phys. Rev. D 62, 064012 (2000).

W.H. Lee, Newtonian hydrodynamics of the coalescence of black holes with neutron stars - IV. Irrotational binaries with a soft equation of state, Monthly Notices of the RAS 328, 583 (2001).

W.H. Lee, Newtonian hydrodynamics of the coalescence of black holes with neutron stars - III. Irrotational binaries with a stiff equation of state, Monthly Notices of the RAS 318, 606 (2000).

W.H. Lee and W. Kluzniak, Newtonian hydrodynamics of the coalescence of black holes with neutron stars - II. Tidally locked binaries with a soft equation of state, Monthly Notices of the RAS 308, 780 (1999).

W.H. Lee and W. Kluzniak, Newtonian Hydrodynamics of the Coalescence of Black Holes with Neutron Stars. I. Tidally Locked Binaries with a Stiff Equation of State, Astrophys. J. 526, 178 (1999).

P. Lorén-Aguilar, J. Guerrero, J. Isern, J.A. Lobo, and E. García-Berro, Gravitational wave radiation from the coalescence of white dwarfs, Monthly Notices of the RAS 356, 627 (2005).

P. Marronetti, M.D. Duez, S.L. Shapiro, and T.W. Baumgarte, Dynamical Determination of the Innermost Stable Circular Orbit of Binary Neutron Stars, Phys. Rev. Lett. 92, 141101 (2004).

M. Miller, P. Gressman, and W. Suen, Towards a realistic neutron star binary inspiral: Initial data and multiple orbit evolution in full general relativity, Phys. Rev. D 69, 064026 (2004),

T. Nakamura and K. Oohara, Gravitational Radiation from Coalescing Binary Neutron Stars. IV - Tidal Disruption, Prog. Theoret. Phys. 86, 73 (1991).

T. Nakamura and K. Oohara, Gravitational Radiation from Coalescing Binary Neutron Stars. II - Simulations Including Back Reaction Potential, Prog. Theoret. Phys. 82, 1066 (1989).

R. Oechslin, K. Uryu, G. Poghosyan, and F.K. Thielemann, The influence of quark matter at high densities on binary neutron star mergers, Monthly Notices of the RAS 349, 1469 (2004).

R. Oechslin, S. Rosswog, and F.-K. Thielemann, Conformally flat smoothed particle hydrodynamics application to neutron star mergers, Phys. Rev. D 65, 103005 (2002).

K. Oohara and T. Nakamura, Gravitational Radiation from Coalescing Binary Neutron Stars. V - Post-Newtonian Calculation, Prog. Theoret. Phys. 88, 307 (1992).

K. Oohara and T. Nakamura, Gravitational Radiation from Coalescing Binary Neutron Stars. III - Simulations from Equilibrium Model, Prog. Theoret. Phys. 83, 906 (1990).

K. Oohara and T. Nakamura, Gravitational Radiation from Coalescing Binary Neutron Stars. I, Prog. Theoret. Phys. 82, 535 (1989).

F.A. Rasio and S.L. Shapiro, Coalescing binary neutron stars, Class. Quantum Grav. 16, R1 (1999).

F.A. Rasio and S.L. Shapiro, Hydrodynamics of binary coalescence. 2. Polytropes with gamma = 5/3, Astrophys. J. 438, 887 (1995).

F.A. Rasio and S.L. Shapiro, Hydrodynamics of binary coalescence. 1. Polytropes with stiff equations of state. Astrophys. J. 432, 242 (1994).

F.A. Rasio and S.L. Shapiro, Hydrodynamical evolution of coalescing binary neutron stars, Astrophys. J. 401, 226 (1992).

S. Rosswog, R. Speith, and G.A. Wynn, Accretion dynamics in neutron star-black hole binaries, Monthly Notices of the RAS 351, 1121 (2004).

S. Rosswog, E. Ramirez-Ruiz, and M.B. Davies, High-resolution calculations of merging neutron stars - III. Gamma-ray bursts, Monthly Notices of the RAS 345, 1077 (2003).

S. Rosswog and M. Liebendorfer, High-resolution calculations of merging neutron stars - II. Neutrino emission, Monthly Notices of the RAS 342, 673 (2003).

S. Rosswog, M.B. Davies, F.-K. Thielemann, and T. Piran, Merging neutron stars: asymmetric systems, Astron. Astrophys. 360, 171 (2000).

S. Rosswog and M.B. Davies, High-resolution calculations of merging neutron stars - I. Model description and hydrodynamic evolution, Monthly Notices of the RAS 334, 481 (2002).

S. Rosswog, M. Liebendörfer, F.-K. Thielemann, M.B. Davies, W. Benz, and T. Piran, Mass ejection in neutron star mergers, Astron. Astrophys. 341, 499 (1999).

M. Ruffert and H.-T. Janka, Coalescing neutron stars - A step towards physical models. III. Improved numerics and different neutron star masses and spins, Astron. Astrophys. 380, 544 (2001).

M. Ruffert, M. Rampp, and H.-T. Janka, Coalescing neutron stars - gravitational waves from polytropic models, Astron. Astrophys. 321, 991 (1997).

M. Ruffert, H.-T. Janka, K. Takahashi, and G. Schaefer, Coalescing neutron stars - a step towards physical models. II. Neutrino emission, neutron tori, and gamma-ray bursts, Astron. Astrophys. 319, 122 (1997).

M. Ruffert, H.-T. Janka, and G. Schaefer, Coalescing neutron stars - a step towards physical models. I. Hydrodynamic evolution and gravitational-wave emission, Astron. Astrophys. 311, 532 (1996).

M. Shibata, K. Taniguchi, and K. Uryu, Merger of binary neutron stars of unequal mass in full general relativity, Phys. Rev. D 68, 084020 (2003).

M. Shibata and K. Uryu, Simulation of merging binary neutron stars in full general relativity: Gamma= 2 case. Phys. Rev. D 61, 064001 (2000).

M. Shibata, Fully general relativistic simulation of coalescing binary neutron stars: Preparatory tests, Phys. Rev. D 60, 104052 (1999).

M. Shibata and K. Uryu, Gravitational Waves from Merger of Binary Neutron Stars in Fully General Relativistic Simulation, Prog. Theoret. Phys. 107, 265 (2002).

M. Shibata, T. Nakamura, and K. Oohara, Coalescence of Spinning Binary Neutron Stars with Plunging Orbit - Newtonian 3D Numerical Simulation, Prog. Theoret. Phys. 89, 809 (1993).

M. Shibata, T. Nakamura, and K. Oohara, Coalescence of Spinning Binary Neutron Stars of Equal Mass - 3D Numerical Simulations, Prog. Theoret. Phys. 88, 1079 (1992).

F.D. Swesty, E.Y.M. Wang, and A.C. Calder, Numerical Models of Binary Neutron Star System Mergers. I. Numerical Methods and Equilibrium Data for Newtonian Models, Astrophys. J. 541, 937 (2000).

J. R. Wilson, G.J. Mathews and P. Marronetti, Relativistic numerical model for close neutron-star binaries, Phys. Rev. D 54, 1317-1331 (1996).

X. Zhuge, J.M. Centrella, and S.L.W. McMillan, Gravitational radiation from the coalescence of binary neutron stars: Effects due to the equation of state, spin, and mass ratio, Phys. Rev. D 54, 7261 (1996).

X. Zhuge, J.M. Centrella, and S.L.W. McMillan, Gravitational radiation from coalescing binary neutron stars, Phys. Rev. D 50, 6247 (1994).

 


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