A well-posed BSSN-type formulation for scalar-tensor theories of gravity with second-order field equations

Fuente: arXiv
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Main Authors: Shum, Harry L. H., Saló, Llibert Aresté, Thaalba, Farid, Bezares, Miguel, Sotiriou, Thomas P.
Format: Preprint
Published: 2025
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_version_ 1866911315558137856
author Shum, Harry L. H.
Saló, Llibert Aresté
Thaalba, Farid
Bezares, Miguel
Sotiriou, Thomas P.
author_facet Shum, Harry L. H.
Saló, Llibert Aresté
Thaalba, Farid
Bezares, Miguel
Sotiriou, Thomas P.
contents Recent developments in the modified harmonic and modified puncture gauges have opened new possibilities for performing stable numerical evolutions beyond General Relativity. In this work, we utilise techniques developed in the aforementioned formalisms to derive a BSSN-type formalism compatible with certain classes of modified gravity theories. As an intermediate step, we also derived modified versions of the Z4 and Z3 formalisms, thereby completing the connection between these formalisms beyond General Relativity. We then test the robustness of the new modified BSSN formalism by simulating the dynamics of black hole systems and benchmarking the results against the modified CCZ4 formulation. These developments enable the exploration of theories beyond General Relativity in many well-known Numerical Relativity codes that use different versions of the puncture gauge approach.
format Preprint
id arxiv_https___arxiv_org_abs_2512_11034
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A well-posed BSSN-type formulation for scalar-tensor theories of gravity with second-order field equations
Shum, Harry L. H.
Saló, Llibert Aresté
Thaalba, Farid
Bezares, Miguel
Sotiriou, Thomas P.
General Relativity and Quantum Cosmology
Recent developments in the modified harmonic and modified puncture gauges have opened new possibilities for performing stable numerical evolutions beyond General Relativity. In this work, we utilise techniques developed in the aforementioned formalisms to derive a BSSN-type formalism compatible with certain classes of modified gravity theories. As an intermediate step, we also derived modified versions of the Z4 and Z3 formalisms, thereby completing the connection between these formalisms beyond General Relativity. We then test the robustness of the new modified BSSN formalism by simulating the dynamics of black hole systems and benchmarking the results against the modified CCZ4 formulation. These developments enable the exploration of theories beyond General Relativity in many well-known Numerical Relativity codes that use different versions of the puncture gauge approach.
title A well-posed BSSN-type formulation for scalar-tensor theories of gravity with second-order field equations
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2512.11034