theorem A.266 von Neumann

open in the book · appendices/A-long-proofs.tex:13305 · p. 2922

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theorem A.266: von NeumannA.266definition 12.79: Deficiency subspaces and indices12.79definition 12.78: Essential self-adjointness12.78definition 12.72: Symmetric; self-adjoint12.72corollary A.275: Momentum on [0,∞): no extensionA.275corollary A.274: Momentum on [0,L]: the circle of extensionsA.274proof : app:A-long-proofs@proof-174proofcorollary 12.19: Double complement; the density criterion12.19definition 12.71: Adjoint of a densely defined operator12.71proposition 12.39: Algebra of the adjoint; the C^\ast identity12.39definition A.269: Cayley transformA.269example 12.82: Momentum on the half-line: no self-adjoint extension12.82example 12.81: Momentum on a finite interval: a circle of self-adjoint momenta12.81lemma A.267: Isometry of A\pmiμ, and closed rangeA.267lemma A.268: The indices do not depend on μA.268theorem 12.80: von Neumann's criterion12.80proposition 12.73: The adjoint is always closed12.73definition 12.69: Operator with a domain12.69lemma A.260: Cayley transform of a self-adjoint operatorA.260lemma A.271: Injectivity of \identity-V for any isometric extensionA.271lemma A.272: The operator attached to an isometryA.272proposition A.273: Self-adjoint means unitaryA.273theorem 12.74: Hellinger–Toeplitz12.74proof : app:A-long-proofs@proof-176proofequation 12.55: eq:hilbert-momentum-domains12.55proof : app:A-long-proofs@proof-175proof

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typedirectionnode provenancewhere
depends_on Deficiency subspaces and indices declared appendices/A-long-proofs.tex:13322
depends_on Essential self-adjointness declared appendices/A-long-proofs.tex:13322
depends_on Symmetric; self-adjoint declared appendices/A-long-proofs.tex:13322
depends_on Momentum on $[0,\infty)$: no extension declared appendices/A-long-proofs.tex:13794
depends_on Momentum on ${[}0,L{]}$: the circle of extensions declared appendices/A-long-proofs.tex:13681
proves app:A-long-proofs@proof-174 declared appendices/A-long-proofs.tex:13574