English

Einstein-Weyl geometry, the dKP equation and twistor theory

Differential Geometry 2009-10-31 v1 General Relativity and Quantum Cosmology Exactly Solvable and Integrable Systems

Abstract

It is shown that Einstein-Weyl (EW) equations in 2+1 dimensions contain the dispersionless Kadomtsev-Petviashvili (dKP) equation as a special case: If an EW structure admits a constant weighted vector then it is locally given by h=dy24dxdt4udt2,ν=4uxdth=d y^2-4d xd t-4ud t^2, \nu=-4u_xd t, where u=u(x,y,t)u=u(x, y, t) satisfies the dKP equation (utuux)x=uyy(u_t-uu_x)_x=u_{yy}. Linearised solutions to the dKP equation are shown to give rise to four-dimensional anti-self-dual conformal structures with symmetries. All four-dimensional hyper-K\"ahler metrics in signature (++)(++--) for which the self-dual part of the derivative of a Killing vector is null arise by this construction. Two new classes of examples of EW metrics which depend on one arbitrary function of one variable are given, and characterised. A Lax representation of the EW condition is found and used to show that all EW spaces arise as symmetry reductions of hyper-Hermitian metrics in four dimensions. The EW equations are reformulated in terms of a simple and closed two-form on the \CP1\CP^1-bundle over a Weyl space. It is proved that complex solutions to the dKP equations, modulo a certain coordinate freedom, are in a one-to-one correspondence with minitwistor spaces (two-dimensional complex manifolds Z{\cal Z} containing a rational curve with normal bundle \O(2)\O(2)) that admit a section of κ1/4\kappa^{-1/4}, where κ\kappa is the canonical bundle of Z{\cal Z}. Real solutions are obtained if the minitwistor space also admits an anti-holomorphic involution with fixed points together with a rational curve and section of κ1/4\kappa^{-1/4} that are invariant under the involution.

Keywords

Cite

@article{arxiv.math/0004031,
  title  = {Einstein-Weyl geometry, the dKP equation and twistor theory},
  author = {Maciej Dunajski and Lionel J. Mason and Paul Tod},
  journal= {arXiv preprint arXiv:math/0004031},
  year   = {2009}
}

Comments

22 pages, 1 figure

R2 v1 2026-07-22T16:32:07.817Z