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Gravitational multi-soliton solutions on flat space

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abstract

It is well known that, for even n, the n-soliton solution on the Minkowski seed, constructed using the inverse-scattering method (ISM) of Belinski and Zakharov (BZ), is the multi-Kerr-NUT solution. We show that, for odd n, the natural seed to use is the Euclidean space with two manifest translational symmetries, and the n-soliton solution is the accelerating multi-Kerr-NUT solution. We thus define the n-soliton solution on flat space for any positive integer n. It admits both Lorentzian and Euclidean sections. In the latter section, we find that a number, say m, of solitons can be eliminated in a non-trivial way by appropriately fixing their corresponding so-called BZ parameters. The resulting solutions, which may split into separate classes, are collectively denoted as [n-m]-soliton solutions on flat space. We then carry out a systematic study of the n- and [n-m]-soliton solutions on flat space. This includes, in particular, an explicit presentation of their ISM construction, an analysis of their local geometries, and a classification of all separate classes of solutions they form. We also show how even-soliton solutions on the seeds of the collinearly centred Gibbons-Hawking and Taub-NUT arise from these solutions.

fields

gr-qc 1

years

2026 1

verdicts

UNVERDICTED 1

representative citing papers

New asymptotically flat gravitational instanton

gr-qc · 2026-05-27 · unverdicted · novelty 6.0

A new two-parameter AF toric gravitational instanton with Euler number 4 and Hirzebruch signature 0 is obtained as a special case of the Euclidean double Kerr-NUT solution, the third in a sequence after Kerr and Chen-Teo, and the first known non-Hermitian Ricci-flat example.

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  • New asymptotically flat gravitational instanton gr-qc · 2026-05-27 · unverdicted · none · ref 33 · internal anchor

    A new two-parameter AF toric gravitational instanton with Euler number 4 and Hirzebruch signature 0 is obtained as a special case of the Euclidean double Kerr-NUT solution, the third in a sequence after Kerr and Chen-Teo, and the first known non-Hermitian Ricci-flat example.