definition 12.2 Hilbert space
open in the book ·
parts/02-mathematical-methods/10-hilbert-spaces.tex:67
· p. 413
- ground object -- no derivation owed
Rests on
-
depends_on
definition 5.18
Inner product
¶
-
depends_on
definition 4.33
Vector space
¶
-
depends_on
definition 4.8
Commutativity; abelian structure
¶
-
depends_on
definition 4.4
Internal binary operation; magma
¶
- depends_on definition 4.3 Algebraic structure ¶
- depends_on definition 4.2 Binary operation ¶
-
depends_on
definition 4.4
Internal binary operation; magma
¶
-
depends_on
definition 4.32
Field
¶
-
depends_on
definition 4.11
Inverse element
¶
- depends_on definition 4.9 Neutral element ¶
-
depends_on
definition 4.20
Monoid
¶
- depends_on definition 4.9 Neutral element ¶ ↺
- depends_on definition 4.18 Semigroup ¶
-
depends_on
definition 4.30
Ring
¶
- depends_on definition 4.8 Commutativity; abelian structure ¶ ↺
- depends_on definition 4.28 Distributivity ¶
- depends_on definition 4.21 Group ¶
- depends_on definition 4.18 Semigroup ¶ ↺
-
depends_on
definition 4.11
Inverse element
¶
-
depends_on
definition 4.31
Module
¶
-
depends_on
definition 4.29
Action
¶
- depends_on definition 4.9 Neutral element ¶ ↺
- depends_on definition 4.28 Distributivity ¶ ↺
- depends_on definition 4.21 Group ¶ ↺
- depends_on definition 4.30 Ring ¶ ↺
-
depends_on
definition 4.29
Action
¶
-
depends_on
definition 4.8
Commutativity; abelian structure
¶
-
depends_on
definition 4.33
Vector space
¶
- depends_on definition 6.27 Convergence; Cauchy sequence; completeness ¶
- depends_on equation 5.44 eq:lin-norm-assoc ¶
Supports
-
depends_on
definition A.278
Countably Hilbert nuclear space
¶
-
depends_on
theorem A.281
Nuclear spaces embed by Hilbert–Schmidt maps; quoted
¶
- depends_on proposition A.282 The fibre maps are continuous on $\Phi$ ¶
-
depends_on
theorem A.281
Nuclear spaces embed by Hilbert–Schmidt maps; quoted
¶
-
depends_on
definition 12.32
Separable Hilbert space
¶
-
depends_on
lemma A.250
Decomposition into cyclic subspaces
¶
-
depends_on
proposition A.280
Direct-integral form of the spectral theorem
¶
- depends_on proposition A.282 The fibre maps are continuous on $\Phi$ ¶ ↺
-
depends_on
proposition A.280
Direct-integral form of the spectral theorem
¶
-
depends_on
lemma A.250
Decomposition into cyclic subspaces
¶
-
depends_on
definition 12.94
Tensor product of Hilbert spaces
¶
-
depends_on
definition 12.99
Product and entangled vectors
¶
- depends_on example 12.100 Entangled vectors exist ¶
- depends_on example 12.98 Two particles in three-dimensional space ¶
-
depends_on
proposition 12.95
The tensor inner product is well defined and
positive definite
¶
- depends_on example 12.100 Entangled vectors exist ¶ ↺
- depends_on proposition 12.96 Operators on a tensor product ¶
-
depends_on
definition 12.99
Product and entangled vectors
¶
-
depends_on
definition 10.85
Sobolev space
¶
-
depends_on
definition A.450
The space $W^{1,r}(a,b)$
¶
-
depends_on
definition A.462
The weighted space and the energy space
¶
-
depends_on
lemma A.463
Poincaré inequality; $B_{K}$ is an inner product
¶
- depends_on lemma A.464 $H_{E}$ is a Hilbert space ¶
- depends_on lemma A.466 The homogeneous Dirichlet problem is trivial ¶
- depends_on theorem A.469 The Green operator inverts $L_{K}$ ¶
-
depends_on
lemma A.463
Poincaré inequality; $B_{K}$ is an inner product
¶
-
depends_on
lemma A.453
Uniform bound and uniform Hölder continuity
¶
-
depends_on
theorem A.455
Compact embedding of $W^{1,r}(a,b)$ into the continuous
functions
¶
- depends_on theorem A.456 Convexity in $q$ implies weak lower semicontinuity ¶
-
depends_on
theorem A.455
Compact embedding of $W^{1,r}(a,b)$ into the continuous
functions
¶
-
depends_on
lemma A.452
Young and Hölder
¶
-
depends_on
lemma A.489
Courant–Lebesgue
¶
- depends_on theorem A.490 Equicontinuity of the normalised class ¶
- depends_on lemma A.463 Poincaré inequality; $B_{K}$ is an inner product ¶ ↺
- depends_on lemma A.453 Uniform bound and uniform Hölder continuity ¶ ↺
-
depends_on
lemma A.489
Courant–Lebesgue
¶
-
depends_on
definition A.462
The weighted space and the energy space
¶
-
depends_on
definition 10.87
Weak form of an elliptic problem
¶
- depends_on corollary 10.89 Existence for the elliptic problem ¶
- depends_on proposition 10.91 Dirichlet principle ¶
-
depends_on
theorem 10.88
Lax–Milgram
¶
- depends_on corollary 10.89 Existence for the elliptic problem ¶ ↺
- depends_on proposition 10.91 Dirichlet principle ¶ ↺
-
depends_on
definition A.450
The space $W^{1,r}(a,b)$
¶
-
depends_on
example 12.9
The sequence space $\ell^{2}$
¶
-
depends_on
definition 12.84
External direct sum
¶
-
depends_on
proposition 12.85
The direct sum is a Hilbert space
¶
-
depends_on
proposition 12.87
Expansion in an orthogonal decomposition
¶
- depends_on lemma A.250 Decomposition into cyclic subspaces ¶ ↺
-
depends_on
proposition 12.87
Expansion in an orthogonal decomposition
¶
-
depends_on
proposition 12.85
The direct sum is a Hilbert space
¶
-
depends_on
proposition 12.10
$\ell^{2}$ is complete
¶
- depends_on proposition 12.85 The direct sum is a Hilbert space ¶ ↺
- depends_on theorem 12.33 Every separable Hilbert space is $\ell^{2}$ ¶
-
depends_on
definition 12.84
External direct sum
¶
-
depends_on
example 12.11
The function space $L^{2}$
¶
-
depends_on
example 12.81
Momentum on a finite interval: a circle of self-adjoint
momenta
¶
- depends_on corollary A.274 Momentum on ${[}0,L{]}$: the circle of extensions ¶
-
depends_on
example 12.82
Momentum on the half-line: no self-adjoint extension
¶
- depends_on corollary A.275 Momentum on $[0,\infty)$: no extension ¶
- depends_on example 12.56 Multiplication by the coordinate: spectrum without eigenvectors ¶
- depends_on example 12.25 Orthogonal polynomials ¶
-
depends_on
example 12.110
The Schrödinger system
¶
- depends_on proposition A.592 The vacuum of the Schrödinger system ¶
- depends_on theorem A.579 Stone–von Neumann ¶
-
depends_on
example 12.104
The Schwartz triple
¶
- depends_on example A.283 Momentum on the line ¶
-
depends_on
proposition 12.106
The plane wave is a generalized momentum
eigenvector
¶
- depends_on example A.283 Momentum on the line ¶ ↺
- depends_on example 12.98 Two particles in three-dimensional space ¶ ↺
-
depends_on
proposition 12.102
Neither plane waves nor deltas are in $L^{2}$
¶
- depends_on example 12.104 The Schwartz triple ¶ ↺
-
depends_on
theorem 12.12
Riesz–Fischer
¶
- depends_on lemma A.464 $H_{E}$ is a Hilbert space ¶ ↺
-
depends_on
example 12.81
Momentum on a finite interval: a circle of self-adjoint
momenta
¶
-
depends_on
lemma A.254
Riemann integral of a continuous curve
¶
-
depends_on
lemma A.255
Smoothed vectors lie in the domain
¶
-
depends_on
proposition A.256
Density
¶
-
depends_on
proposition A.259
The generator is self-adjoint
¶
- depends_on lemma A.260 Cayley transform of a self-adjoint operator ¶
- depends_on proposition A.263 The two constructions are inverse ¶
-
depends_on
proposition A.259
The generator is self-adjoint
¶
-
depends_on
proposition A.256
Density
¶
-
depends_on
lemma A.257
Integrated form of the equation of motion
¶
-
depends_on
proposition A.258
The generator is closed
¶
- depends_on proposition A.259 The generator is self-adjoint ¶ ↺
-
depends_on
proposition A.258
The generator is closed
¶
-
depends_on
lemma A.583
Absolutely convergent operator-valued integrals
¶
-
depends_on
definition A.585
The Gaussian average of the Weyl operators
¶
-
depends_on
theorem A.587
The Gaussian average is a non-zero projector that
absorbs the Weyl operators
¶
- depends_on lemma A.590 The Gram matrix is universal ¶
- depends_on proposition A.589 Cyclic subspaces and the rank of the average ¶
- depends_on proposition A.592 The vacuum of the Schrödinger system ¶ ↺
-
depends_on
theorem A.587
The Gaussian average is a non-zero projector that
absorbs the Weyl operators
¶
-
depends_on
definition A.585
The Gaussian average of the Weyl operators
¶
-
depends_on
lemma A.255
Smoothed vectors lie in the domain
¶
-
depends_on
proposition 12.4
Cauchy–Schwarz and continuity of the inner product
¶
-
depends_on
corollary 12.5
Continuity of the norm and of orthogonality
¶
-
depends_on
proposition 12.17
The complement is always a closed subspace
¶
-
depends_on
corollary 12.19
Double complement; the density criterion
¶
- depends_on definition 12.79 Deficiency subspaces and indices ¶
- depends_on definition 12.69 Operator with a domain ¶
- depends_on definition 12.103 Gelfand triple ¶
- depends_on definition 12.50 Point, continuous and residual spectrum ¶
- depends_on definition 12.71 Adjoint of a densely defined operator ¶
- depends_on theorem 12.30 Completeness, expansion, Parseval ¶
- depends_on theorem 12.55 The spectrum of a self-adjoint operator is real ¶
-
depends_on
theorem 12.18
Projection theorem
¶
- depends_on corollary 12.19 Double complement; the density criterion ¶ ↺
- depends_on definition A.248 Cyclic vector and cyclic subspace ¶
- depends_on definition 12.20 Orthogonal projection operator ¶
- depends_on lemma A.233 Construction of the system ¶
- depends_on lemma A.231 Restriction to an invariant closed subspace ¶
- depends_on lemma A.267 Isometry of $A\pm\ii\mu$, and closed range ¶
- depends_on proposition 12.27 Best approximation and Bessel's inequality ¶
- depends_on proposition 12.21 Characterization of orthogonal projections ¶
- depends_on theorem 12.46 Riesz representation ¶
-
depends_on
corollary 12.19
Double complement; the density criterion
¶
-
depends_on
proposition 12.17
The complement is always a closed subspace
¶
-
depends_on
lemma A.606
$F$ is entire, and is the overlap in disguise
¶
-
depends_on
lemma A.607
A zero-free entire function is an exponential
¶
-
depends_on
proposition A.609
The exponent is a quadratic polynomial
¶
- depends_on proposition A.611 The constraint on $\Gamma$ ¶
-
depends_on
proposition A.609
The exponent is a quadratic polynomial
¶
-
depends_on
lemma A.607
A zero-free entire function is an exponential
¶
- depends_on lemma A.254 Riemann integral of a continuous curve ¶ ↺
- depends_on lemma A.583 Absolutely convergent operator-valued integrals ¶ ↺
- depends_on proposition 12.102 Neither plane waves nor deltas are in $L^{2}$ ¶ ↺
-
depends_on
theorem 25.53
Properties of the Wigner function
¶
-
depends_on
lemma A.603
Overlaps and the resolution of unity
¶
- depends_on proposition A.611 The constraint on $\Gamma$ ¶ ↺
-
depends_on
proposition A.604
Non-negativity forbids a vanishing overlap
¶
- depends_on proposition A.609 The exponent is a quadratic polynomial ¶ ↺
-
depends_on
lemma A.603
Overlaps and the resolution of unity
¶
-
depends_on
corollary 12.5
Continuity of the norm and of orthogonality
¶
-
depends_on
proposition 12.28
Convergence criterion for orthogonal series
¶
- depends_on theorem 12.30 Completeness, expansion, Parseval ¶ ↺
- depends_on proposition 12.51 The three cases are exclusive and exhaustive ¶
-
depends_on
theorem 16.70
The direct method
¶
- depends_on lemma 16.72 Convexity implies weak lower semicontinuity ¶
- depends_on theorem A.477 Douglas; Radó ¶
- depends_on theorem A.448 Tonelli ¶ ↺
- depends_on theorem 16.81 Douglas; Radó ¶
- depends_on theorem 16.73 Tonelli ¶ ↺
-
depends_on
theorem 12.14
Closest point in a closed convex set
¶
- depends_on theorem 12.18 Projection theorem ¶ ↺
- … 1 more
Neighborhood
Every logical edge within two steps of this node.
- declared and complete
- partly declared
- a check failed
- not graded
- declared in the source
- inferred from structure
Edges
| type | direction | node | provenance | where |
|---|---|---|---|---|
depends_on |
→ | Inner product | declared | parts/02-mathematical-methods/10-hilbert-spaces.tex:74 |
depends_on |
→ | Convergence; Cauchy sequence; completeness | declared | parts/02-mathematical-methods/10-hilbert-spaces.tex:74 |
depends_on |
→ | eq:lin-norm-assoc | declared | parts/02-mathematical-methods/10-hilbert-spaces.tex:74 |
depends_on |
← | Countably Hilbert nuclear space | declared | appendices/A-long-proofs.tex:13903 |
depends_on |
← | Separable Hilbert space | declared | parts/02-mathematical-methods/10-hilbert-spaces.tex:817 |
depends_on |
← | Tensor product of Hilbert spaces | declared | parts/02-mathematical-methods/10-hilbert-spaces.tex:2596 |
depends_on |
← | Sobolev space | declared | parts/02-mathematical-methods/08-pdes.tex:2295 |
depends_on |
← | The sequence space $\ell^{2}$ | declared | parts/02-mathematical-methods/10-hilbert-spaces.tex:245 |
depends_on |
← | The function space $L^{2}$ | declared | parts/02-mathematical-methods/10-hilbert-spaces.tex:286 |
depends_on |
← | Riemann integral of a continuous curve | declared | appendices/A-long-proofs.tex:12667 |
depends_on |
← | Cauchy–Schwarz and continuity of the inner product | declared | parts/02-mathematical-methods/10-hilbert-spaces.tex:115 |
depends_on |
← | Convergence criterion for orthogonal series | declared | parts/02-mathematical-methods/10-hilbert-spaces.tex:708 |
depends_on |
← | The three cases are exclusive and exhaustive | declared | parts/02-mathematical-methods/10-hilbert-spaces.tex:1332 |
depends_on |
← | The direct method | declared | parts/02-mathematical-methods/14-calculus-of-variations.tex:2184 |
depends_on |
← | Closest point in a closed convex set | declared | parts/02-mathematical-methods/10-hilbert-spaces.tex:348 |
depends_on |
← | Lax–Milgram | declared | parts/02-mathematical-methods/08-pdes.tex:2350 |