Conformal invariants from nodal sets. I. negative eigenvalues and curvature prescription

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Abstract

In this paper, we study conformal invariants that arise from nodal sets and negative eigenvalues of conformally covariant operators; more specifically, the Graham, Jenne, Mason, and Sparling (GJMS) operators, which include the Yamabe and Paneitz operators. We give several applications to curvature prescription problems. We establish a version in conformal geometry of Courant's Nodal Domain Theorem. We also show that on any manifold of dimension n≥3, there exist many metrics for which our invariants are nontrivial. We prove that the Yamabe operator can have an arbitrarily large number of negative eigenvalues on any manifold of dimension n≥3. We obtain similar results for some higher order GJMS operators on some Einstein and Heisenberg manifolds. We describe the invariants arising from the Yamabe and Paneitz operators associated to left-invariant metrics on Heisenberg manifolds. Finally, in Appendix, the second named author and Andrea Malchiodi study the Q-curvature prescription problems for noncritical Q-curvatures. © 2013 The Author(s). Published by Oxford University Press. All rights reserved.

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Gover, R., Canzani, Y., Jakobson, D., Ponge, R., & Malchiodi, A. (2014). Conformal invariants from nodal sets. I. negative eigenvalues and curvature prescription. International Mathematics Research Notices, 2014(9), 2356–2400. https://doi.org/10.1093/imrn/rns295

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