2017
DOI: 10.1090/ert/506
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Resonances for the Laplacian on Riemannian symmetric spaces: The case of 𝑆𝐿(3,ℝ)/𝕊𝕆(3)

Abstract: Abstract. We show that the resolvent of the Laplacian on SL(3, R)/SO(3) can be lifted to a meromorphic function on a Riemann surface which is a branched covering of C. The poles of this function are called the resonances of the Laplacian. We determine all resonances and show that the corresponding residue operators are given by convolution with spherical functions parameterized by the resonances. The ranges of these operators are infinite dimensional irreducible SL(3, R)-representations. We determine their Lan… Show more

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Cited by 14 publications
(13 citation statements)
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“…For a subtle application of that see a recent paper by Datchev [52] where existence of arbitrarily wide resonance free strips for negative curvature perturbations of z → z + 1 \H 2 is established. For a recent analysis of a higher rank symmetric spaces and references to earlier works see Mazzeo-Vasy [177,178] and Hilgert-Pasquale-Przebinda [126].…”
Section: Meromorphic Continuation In Geometric Scatteringmentioning
confidence: 99%
“…For a subtle application of that see a recent paper by Datchev [52] where existence of arbitrarily wide resonance free strips for negative curvature perturbations of z → z + 1 \H 2 is established. For a recent analysis of a higher rank symmetric spaces and references to earlier works see Mazzeo-Vasy [177,178] and Hilgert-Pasquale-Przebinda [126].…”
Section: Meromorphic Continuation In Geometric Scatteringmentioning
confidence: 99%
“…Let Π = {α, β} be the set of simple roots for the positive system ∆ + . We fix α and β in such a way that the root spaces g α and g β are given by g α = CE 12 and g β = CE 23 . We write ρ for half the sum of the positive roots.…”
Section: Application To Sl(3 R)mentioning
confidence: 99%
“…A direct computation shows that (XY + Y X) ⊗ 1 − ρ satisfies the condition (C2), that is, it is annihilated by X α and X β in M ( ρ). (Here one may take X α and X β to be X α = E 12 and X β = E 23 , as g α = CE 12 and g β = CE 23 ; see Section 4.1.) Now the lemma follows.…”
Section: The Case Of Infinitesimal Character ρmentioning
confidence: 99%
See 1 more Smart Citation
“…In the last thirty years, the problem of the analytic or meromorphic extension of the resolvent of the Laplacian across its continuous spectrum has been studied for several classes of noncompact complete Riemannian manifolds. Examples include asymptotically hyperbolic manifolds, such as the real hyperbolic space and its convex co-compact quotients ( [16,7,5]), manifolds with asymptotically cylindrical ends ( [6,20]), and Riemannian symmetric or locally symmetric spaces of the noncompact type ( [6,7,1,21,17,18,23,19,12,13]).…”
Section: Introductionmentioning
confidence: 99%