Spectral geometry on manifolds with fibered boundary metrics I: Low energy resolvent

D. Grieser, Mohammad Talebi, Boris Vertman
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引用次数: 6

Abstract

We study the low energy resolvent of the Hodge Laplacian on a manifold equipped with a fibred boundary metric. We determine the precise asymptotic behavior of the resolvent as a fibred boundary (aka $\phi$-) pseudodifferential operator when the resolvent parameter tends to zero. This generalizes previous work by Guillarmou and Sher who considered asymptotically conic metrics, which correspond to the special case when the fibres are points. The new feature in the case of non-trivial fibres is that the resolvent has different asymptotic behavior on the subspace of forms that are fibrewise harmonic and on its orthogonal complement. To deal with this, we introduce an appropriate 'split' pseudodifferential calculus, building on and extending work by Grieser and Hunsicker. Our work sets the basis for the discussion of spectral invariants on $\phi$-manifolds.
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具有纤维边界度量的流形上的光谱几何I:低能量分辨
研究了带有纤维边界度量的流形上霍奇拉普拉斯算子的低能解。当解析参数趋于零时,我们确定解析函数作为纤维边界(又名$\phi$-)伪微分算子的精确渐近行为。这概括了Guillarmou和Sher之前的研究,他们考虑了渐近二次指标,这对应于纤维是点的特殊情况。在非平凡纤维情况下的新特征是,解在纤维调和形式的子空间及其正交补上具有不同的渐近行为。为了解决这个问题,我们在Grieser和Hunsicker的工作的基础上,引入了一个适当的“分裂”伪微分学。我们的工作为讨论$\ φ $-流形上的谱不变量奠定了基础。
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