Minimal volume

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In differential geometry, a quaternion-Kähler symmetric space or Wolf space is a quaternion-Kähler manifold which, as a Riemannian manifold, is a Riemannian symmetric space. Any quaternion-Kähler symmetric space with positive Ricci curvature is compact and simply connected, and is a Riemannian product of quaternion-Kähler symmetric spaces associated to compact simple Lie groups.

For any compact simple Lie group G, there is a unique G/H obtained as a quotient of G by a subgroup

H=K⋅Sp(1).

Here, Sp(1) is the compact form of the SL(2)-triple associated with the highest root of G, and K its centralizer in G. These are classified as follows.

G H quaternionic dimension geometric interpretation
SU(p+2) S(U(p)×U(2)) p Grassmannian of complex 2-dimensional subspaces of ℂp+2
SO(p+4) SO(p)⋅SO(4) p Grassmannian of oriented real 4-dimensional subspaces of ℝp+4
Sp(p+1) Sp(p)⋅Sp(1) p Grassmannian of quaternionic 1-dimensional subspaces of ℍp+1
E6 SU(6)⋅SU(2) 10 Space of symmetric subspaces of (ℂ⊗𝕆)P2 isometric to (ℂ⊗ℍ)P2
E7 Spin(12)⋅Sp(1) 16 Rosenfeld projective plane (ℍ⊗𝕆)P2 over ℍ⊗𝕆
E8 E7⋅Sp(1) 28 Space of symmetric subspaces of (𝕆⊗𝕆)P2 isomorphic to (ℍ⊗𝕆)P2
F4 Sp(3)⋅Sp(1) 7 Space of the symmetric subspaces of 𝕆ℙ2 which are isomorphic to ℍℙ2
G2 SO(4) 2 Space of the subalgebras of the octonion algebra 𝕆 which are isomorphic to the quaternion algebra ℍ

The twistor spaces of quaternion-Kähler symmetric spaces are the homogeneous holomorphic contact manifolds, classified by Boothby: they are the adjoint varieties of the complex semisimple Lie groups.

These spaces can be obtained taking a projectivization of a minimal nilpotent orbit of the respective complex Lie group. The holomorphic contact structure is apparent, because the nilpotent orbits of semisimple Lie groups are equipped with the Kirillov-Kostant holomorphic symplectic form. This argument also explains how one can associate a unique Wolf space to each of the simple complex Lie groups.

See also

References

  • Besse, Arthur Lancelot, Einstein Manifolds, Springer-Verlag, New York (1987).
  • Salamon, Simon, Quaternionic Kähler manifolds, Invent. Math. 67 (1982), 143–171.