definition 5.41 Adjoint
open in the book ·
parts/02-mathematical-methods/03-linear-algebra-representations.tex:1863
· p. 118
- 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 5.37
Linear transformation
¶
- depends_on definition 4.33 Vector space ¶ ↺
Supports
-
depends_on
proposition 5.42
The adjoint exists, is unique, and is linear
¶
- depends_on corollary 5.82 Spectral theorem for a normal operator ¶
-
depends_on
theorem 12.38
Existence and uniqueness of the adjoint
¶
-
depends_on
definition 12.41
The operator classes
¶
-
depends_on
definition 12.90
Self-adjoint family; commutant; irreducibility
¶
-
depends_on
proposition A.589
Cyclic subspaces and the rank of the average
¶
- depends_on lemma A.590 The Gram matrix is universal ¶
- depends_on proposition A.591 Any two irreducible Weyl systems are equivalent ¶
- depends_on theorem A.579 Stone–von Neumann ¶
-
depends_on
theorem 12.91
Schur's lemma, commutant form
¶
- depends_on proposition A.591 Any two irreducible Weyl systems are equivalent ¶ ↺
- depends_on theorem 12.114 Stone–von Neumann ¶
- depends_on theorem 12.114 Stone–von Neumann ¶ ↺
-
depends_on
proposition A.589
Cyclic subspaces and the rank of the average
¶
-
depends_on
definition 12.58
Projection-valued measure
¶
-
depends_on
definition 12.60
Functional calculus
¶
- depends_on proposition 12.61 Uniqueness of the continuous functional calculus ¶
- depends_on lemma A.247 Integration against a projection-valued measure ¶
-
depends_on
theorem A.238
Spectral theorem, both forms
¶
- depends_on proposition A.280 Direct-integral form of the spectral theorem ¶
- depends_on proposition A.261 Spectral theorem for a unitary operator ¶
- depends_on theorem A.279 Gelfand–Maurin ¶
- depends_on theorem A.253 Stone ¶
-
depends_on
theorem 12.59
Spectral theorem for a bounded self-adjoint operator
¶
- depends_on definition 12.60 Functional calculus ¶ ↺
- depends_on theorem 12.107 Nuclear spectral theorem ¶
- depends_on theorem 12.91 Schur's lemma, commutant form ¶ ↺
- depends_on theorem 12.66 Stone ¶
-
depends_on
definition 12.60
Functional calculus
¶
-
depends_on
definition 12.64
Strongly continuous one-parameter unitary group
¶
-
depends_on
definition A.580
Weyl operator
¶
- depends_on definition A.585 The Gaussian average of the Weyl operators ¶
- depends_on lemma A.581 Composition law ¶
-
depends_on
definition 12.109
Weyl system
¶
- depends_on corollary 12.112 Commutator of the momentum with a function of the position ¶
- depends_on definition A.580 Weyl operator ¶ ↺
- depends_on example 12.110 The Schrödinger system ¶
- depends_on proposition 12.111 The Weyl relation is a covariance statement ¶
- depends_on theorem A.579 Stone–von Neumann ¶ ↺
- depends_on theorem 12.114 Stone–von Neumann ¶ ↺
- depends_on lemma A.255 Smoothed vectors lie in the domain ¶
- depends_on lemma A.581 Composition law ¶ ↺
-
depends_on
lemma A.582
Joint strong continuity
¶
- depends_on lemma A.583 Absolutely convergent operator-valued integrals ¶
- depends_on proposition A.256 Density ¶ ↺
- depends_on proposition 12.65 Exponential of a bounded self-adjoint operator ¶
-
depends_on
proposition 12.67
The generator is symmetric, and generates the
motion
¶
- depends_on lemma A.257 Integrated form of the equation of motion ¶
- depends_on proposition A.263 The two constructions are inverse ¶
- depends_on proposition A.259 The generator is self-adjoint ¶
- depends_on proposition 12.111 The Weyl relation is a covariance statement ¶ ↺
- depends_on theorem A.253 Stone ¶ ↺
- depends_on theorem A.253 Stone ¶ ↺
- depends_on theorem 12.66 Stone ¶ ↺
-
depends_on
theorem 25.34
Stone–von Neumann
¶
- depends_on lemma 25.39 The low-degree images are forced ¶
- depends_on theorem 25.38 Groenewold–van Hove ¶
-
depends_on
definition A.580
Weyl operator
¶
-
depends_on
lemma A.231
Restriction to an invariant closed subspace
¶
-
depends_on
lemma A.233
Construction of the system
¶
- depends_on lemma A.234 The eigenvalues tend to zero, with finite multiplicity ¶
-
depends_on
lemma A.233
Construction of the system
¶
-
depends_on
lemma A.230
Sequential characterisation
¶
-
depends_on
lemma A.232
Attainment
¶
- depends_on lemma A.233 Construction of the system ¶ ↺
- depends_on lemma A.231 Restriction to an invariant closed subspace ¶ ↺
- depends_on lemma A.234 The eigenvalues tend to zero, with finite multiplicity ¶ ↺
-
depends_on
lemma A.232
Attainment
¶
-
depends_on
proposition 12.42
Elementary consequences
¶
- depends_on lemma A.232 Attainment ¶ ↺
-
depends_on
proposition 12.43
Norm of a self-adjoint operator
¶
- depends_on lemma A.232 Attainment ¶ ↺
- depends_on lemma A.239 The norm of a self-adjoint operator lies in its spectrum ¶
- depends_on theorem A.229 Hilbert–Schmidt ¶
- depends_on theorem A.238 Spectral theorem, both forms ¶ ↺
- depends_on theorem 12.44 Hilbert–Schmidt: compact self-adjoint operators ¶
- depends_on theorem 12.59 Spectral theorem for a bounded self-adjoint operator ¶ ↺
- depends_on theorem A.229 Hilbert–Schmidt ¶ ↺
- depends_on theorem 12.44 Hilbert–Schmidt: compact self-adjoint operators ¶ ↺
-
depends_on
theorem 12.55
The spectrum of a self-adjoint operator is real
¶
- depends_on example 12.56 Multiplication by the coordinate: spectrum without eigenvectors ¶
- depends_on theorem A.238 Spectral theorem, both forms ¶ ↺
- depends_on theorem 12.59 Spectral theorem for a bounded self-adjoint operator ¶ ↺
-
depends_on
definition 12.90
Self-adjoint family; commutant; irreducibility
¶
-
depends_on
definition 12.71
Adjoint of a densely defined operator
¶
-
depends_on
definition 12.79
Deficiency subspaces and indices
¶
-
depends_on
definition A.269
Cayley transform
¶
- depends_on proposition A.270 Properties of the transform ¶
-
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 12.81
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
lemma A.267
Isometry of $A\pm\ii\mu$, and closed range
¶
- depends_on definition A.269 Cayley transform ¶ ↺
- depends_on lemma A.268 The indices do not depend on $\mu$ ¶
- depends_on proposition A.270 Properties of the transform ¶ ↺
- depends_on proposition A.273 Self-adjoint means unitary ¶
- depends_on lemma A.268 The indices do not depend on $\mu$ ¶ ↺
-
depends_on
theorem A.266
von Neumann
¶
- depends_on corollary A.275 Momentum on $[0,\infty)$: no extension ¶ ↺
- depends_on corollary A.274 Momentum on ${[}0,L{]}$: the circle of extensions ¶ ↺
-
depends_on
theorem 12.80
von Neumann's criterion
¶
- depends_on example 12.82 Momentum on the half-line: no self-adjoint extension ¶ ↺
- depends_on example 12.81 Momentum on a finite interval: a circle of self-adjoint momenta ¶ ↺
-
depends_on
definition A.269
Cayley transform
¶
-
depends_on
definition 12.72
Symmetric; self-adjoint
¶
-
depends_on
definition 12.78
Essential self-adjointness
¶
- depends_on theorem A.266 von Neumann ¶ ↺
- depends_on theorem 12.80 von Neumann's criterion ¶ ↺
-
depends_on
lemma A.260
Cayley transform of a self-adjoint operator
¶
- depends_on proposition A.262 Spectral theorem for an unbounded self-adjoint operator ¶
- depends_on lemma A.267 Isometry of $A\pm\ii\mu$, and closed range ¶ ↺
-
depends_on
lemma A.271
Injectivity of $\identity-V$ for any isometric
extension
¶
- depends_on lemma A.272 The operator attached to an isometry ¶
- depends_on lemma A.272 The operator attached to an isometry ¶ ↺
- depends_on proposition A.273 Self-adjoint means unitary ¶ ↺
- depends_on theorem A.266 von Neumann ¶ ↺
-
depends_on
theorem 12.74
Hellinger–Toeplitz
¶
- depends_on corollary 12.76 Position and momentum are unbounded, and cannot be everywhere defined ¶
- depends_on theorem 12.80 von Neumann's criterion ¶ ↺
-
depends_on
definition 12.78
Essential self-adjointness
¶
-
depends_on
proposition 12.73
The adjoint is always closed
¶
- depends_on definition 12.78 Essential self-adjointness ¶ ↺
- depends_on lemma A.260 Cayley transform of a self-adjoint operator ¶ ↺
-
depends_on
definition 12.79
Deficiency subspaces and indices
¶
-
depends_on
proposition 12.39
Algebra of the adjoint; the $C^{\ast}$ identity
¶
- depends_on definition 12.79 Deficiency subspaces and indices ¶ ↺
-
depends_on
proposition A.241
The polynomial calculus is isometric
¶
-
depends_on
proposition A.243
Continuous functional calculus
¶
- depends_on definition A.248 Cyclic vector and cyclic subspace ¶
- depends_on proposition A.246 Bounded Borel functional calculus ¶
- depends_on proposition A.245 The measures $\mu_{x,y}$ ¶
-
depends_on
proposition A.243
Continuous functional calculus
¶
- depends_on proposition 12.65 Exponential of a bounded self-adjoint operator ¶ ↺
- depends_on proposition 12.42 Elementary consequences ¶ ↺
- depends_on proposition 12.43 Norm of a self-adjoint operator ¶ ↺
- depends_on proposition 12.96 Operators on a tensor product ¶
-
depends_on
definition 12.41
The operator classes
¶
- depends_on theorem 5.43 The four fundamental subspaces ¶
-
depends_on
theorem 5.80
Simultaneous diagonalization of commuting self-adjoint
operators
¶
- depends_on corollary 5.82 Spectral theorem for a normal operator ¶ ↺
-
depends_on
theorem 5.79
Spectral theorem for a self-adjoint operator
¶
-
depends_on
definition 30.20
Pressure and deviatoric stress
¶
-
depends_on
definition 30.31
The engineering moduli
¶
-
depends_on
phenomenon 30.70
Hertzian contact
¶
- depends_on definition A.698 The Hertz contact problem ¶
- depends_on example A.703 The numbers of the chapter, recomputed ¶
- depends_on example 30.71 Contact stresses are enormous ¶
-
depends_on
phenomenon 30.60
Coulomb's law of torsion
¶
- depends_on example 30.61 A torsion fibre as a force sensor ¶
- depends_on phenomenon 34.3 The stiffness of a twisted wire is geometric ¶
- depends_on remark 30.62 Saint-Venant's theory: non-circular sections warp ¶
- tests experiment Coulomb: the torsion pendulum ¶
-
depends_on
proposition 30.33
Conversion among the moduli
¶
- depends_on definition 30.63 Flexural rigidity ¶
- depends_on example 30.35 From single crystals to the isotropic aggregate ¶
- depends_on proposition A.682 The plane-stress law ¶
- depends_on proposition 30.44 The speed ratio is fixed by Poisson's ratio ¶
- depends_on remark 30.36 How the moduli are actually measured ¶
-
depends_on
proposition 30.51
Moment and curvature
¶
- depends_on definition A.680 Kirchhoff kinematics ¶
- depends_on definition 30.63 Flexural rigidity ¶ ↺
- depends_on phenomenon 30.52 Euler buckling ¶
- depends_on theorem 30.56 The beam equation ¶
- depends_on remark A.676 The third cubic constant is measured, and it is not small ¶
-
depends_on
theorem A.695
Boussinesq's point-force solution, quoted
¶
- depends_on definition A.698 The Hertz contact problem ¶ ↺
- depends_on lemma A.697 Surface displacement under a distributed pressure ¶
-
depends_on
phenomenon 30.70
Hertzian contact
¶
-
depends_on
definition 30.79
Maxwell viscoelasticity
¶
- depends_on proposition 30.80 A Maxwell material is a solid or a fluid depending on how long you watch ¶
-
depends_on
proposition 30.74
The maximum shear stress, and its indifference to
pressure
¶
- depends_on phenomenon 30.73 Yield and brittle fracture ¶
- depends_on remark A.705 The dangerous stress is below the surface ¶
- depends_on remark 30.75 Two criteria, one uncited ¶
- depends_on remark 30.75 Two criteria, one uncited ¶ ↺
-
depends_on
definition 30.31
The engineering moduli
¶
-
depends_on
proposition 30.9
Principal strains
¶
- depends_on example 30.10 Simple shear and pure shear are the same strain ¶
- depends_on theorem 5.80 Simultaneous diagonalization of commuting self-adjoint operators ¶ ↺
-
depends_on
theorem 5.84
Spectral theorem for a real symmetric operator
¶
-
depends_on
corollary 5.91
The operator norm of a real array
¶
- depends_on proposition 5.92 The eigenvalues do not control the norm ¶
-
depends_on
lemma A.610
Block positivity
¶
-
depends_on
proposition A.611
The constraint on $\Gamma$
¶
- depends_on proposition A.612 The dictionary between $A$ and $\Gamma$ ¶
-
depends_on
proposition A.611
The constraint on $\Gamma$
¶
-
depends_on
lemma A.601
Several variables, complex symmetric matrix
¶
- depends_on proposition A.612 The dictionary between $A$ and $\Gamma$ ¶ ↺
-
depends_on
proposition A.602
The Wigner function of a Gaussian is a positive
Gaussian
¶
- depends_on proposition A.604 Non-negativity forbids a vanishing overlap ¶
-
depends_on
lemma A.600
The real part of an inverse
¶
- depends_on lemma A.601 Several variables, complex symmetric matrix ¶ ↺
- depends_on proposition A.612 The dictionary between $A$ and $\Gamma$ ¶ ↺
- depends_on proposition 5.90 Polar decomposition ¶
-
depends_on
proposition 5.94
Principal axes of a real quadratic form
¶
- depends_on proposition 5.95 The focal polar equation of a conic ¶
- depends_on proposition 5.92 The eigenvalues do not control the norm ¶ ↺
-
depends_on
theorem 5.86
Simultaneous diagonalization of a definite pencil
¶
- depends_on corollary 5.89 Rayleigh–Ritz ¶
-
depends_on
proposition 5.88
Rayleigh quotient of a definite pencil
¶
- depends_on corollary 5.91 The operator norm of a real array ¶ ↺
- depends_on corollary 5.89 Rayleigh–Ritz ¶ ↺
-
depends_on
corollary 5.91
The operator norm of a real array
¶
-
depends_on
theorem 28.33
Normal modes
¶
- depends_on example 28.39 The linear triatomic molecule ¶
- depends_on proposition 28.40 Modes and dispersion of the loaded string ¶
- depends_on remark 28.34 Part II owes the simultaneous diagonalization of two quadratic forms ¶
-
depends_on
theorem 29.16
Principal axes
¶
-
depends_on
definition 29.19
Inertia ellipsoid
¶
-
depends_on
theorem 29.29
Poinsot's construction
¶
- depends_on remark 29.32 What the linearization is entitled to conclude ¶
- depends_on remark 29.30 Polhode and herpolhode ¶
-
depends_on
theorem 29.29
Poinsot's construction
¶
- depends_on definition 29.35 The Lagrange top ¶
-
depends_on
definition 29.18
Classification of tops
¶
-
depends_on
proposition 29.28
Free rotation of a symmetric body
¶
- depends_on phenomenon 29.34 Free nutation of the Earth ¶
-
depends_on
proposition 29.28
Free rotation of a symmetric body
¶
-
depends_on
phenomenon 29.31
The intermediate-axis instability
¶
- depends_on remark 29.32 What the linearization is entitled to conclude ¶ ↺
- depends_on proposition 29.33 Dissipation drives a free body to its largest moment ¶
-
depends_on
proposition 29.17
Triangle inequalities
¶
- depends_on proposition 29.22 Perpendicular-axis theorem ¶
-
depends_on
theorem 29.25
Euler's equations
¶
-
depends_on
phenomenon 29.46
A fast spinning top does not fall
¶
- depends_on phenomenon 29.49 Precession of the equinoxes ¶
- depends_on phenomenon 29.31 The intermediate-axis instability ¶ ↺
-
depends_on
proposition 29.26
The two integrals of torque-free motion
¶
- depends_on proposition 29.33 Dissipation drives a free body to its largest moment ¶ ↺
- depends_on proposition 29.43 The three integrable heavy tops ¶
- depends_on remark 29.27 Euler's equations as a Lie–Poisson system ¶
- depends_on remark 29.30 Polhode and herpolhode ¶ ↺
- depends_on remark 24.42 The intermediate axis ¶
- depends_on theorem 29.29 Poinsot's construction ¶ ↺
- depends_on proposition 29.28 Free rotation of a symmetric body ¶ ↺
-
depends_on
proposition 24.41
The free rigid body is a Lie–Poisson system
¶
- depends_on remark 24.48 Reduction is what physicists do without saying so ¶
- depends_on remark 24.42 The intermediate axis ¶ ↺
-
depends_on
phenomenon 29.46
A fast spinning top does not fall
¶
-
depends_on
definition 29.19
Inertia ellipsoid
¶
-
depends_on
definition 30.20
Pressure and deviatoric stress
¶
Neighborhood
Every logical edge within two steps of this node.
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- 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/03-linear-algebra-representations.tex:1875 |
depends_on |
→ | Linear transformation | declared | parts/02-mathematical-methods/03-linear-algebra-representations.tex:1875 |
depends_on |
← | The adjoint exists, is unique, and is linear | declared | parts/02-mathematical-methods/03-linear-algebra-representations.tex:1890 |
depends_on |
← | Existence and uniqueness of the adjoint | declared | parts/02-mathematical-methods/10-hilbert-spaces.tex:959 |
depends_on |
← | The four fundamental subspaces | declared | parts/02-mathematical-methods/03-linear-algebra-representations.tex:1962 |
depends_on |
← | Simultaneous diagonalization of commuting self-adjoint operators | declared | parts/02-mathematical-methods/03-linear-algebra-representations.tex:3513 |
depends_on |
← | Spectral theorem for a self-adjoint operator | declared | parts/02-mathematical-methods/03-linear-algebra-representations.tex:3432 |