Linear Operators, Part 2 |
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Page 1280
... formal differential operator of order n on the interval I is an expression T = a ( 1 ) ( a ) d \ n dn - 1 + an - 1 ... formal differential operator . If it is desired to emphasize the distinction between the case in which a , is allowed ...
... formal differential operator of order n on the interval I is an expression T = a ( 1 ) ( a ) d \ n dn - 1 + an - 1 ... formal differential operator . If it is desired to emphasize the distinction between the case in which a , is allowed ...
Page 1289
... formal algebra of formal differential operators are worth mentioning although we shall not make much use of them ; for this reason they will not be numbered as theorems and lemmas . They will be valid for both regular and irregular formal ...
... formal algebra of formal differential operators are worth mentioning although we shall not make much use of them ; for this reason they will not be numbered as theorems and lemmas . They will be valid for both regular and irregular formal ...
Page 1540
... formal differential operator on an interval I , and let B be a compact operator in L2 ( I ) . Prove that the essential spectrum of 7 coincides with the essential spectrum of the operator T1 ( 7 ) + B . All Let be a regular formal ...
... formal differential operator on an interval I , and let B be a compact operator in L2 ( I ) . Prove that the essential spectrum of 7 coincides with the essential spectrum of the operator T1 ( 7 ) + B . All Let be a regular formal ...
Contents
BAlgebras | 859 |
Commutative BAlgebras | 868 |
Commutative BAlgebras | 874 |
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adjoint extension adjoint operator algebra analytic B-algebra Borel set boundary conditions boundary values bounded operator C₁ closed closure coefficients compact operator complex numbers continuous function converges Corollary deficiency indices Definition denote dense eigenvalues element equation essential spectrum Exercise exists finite dimensional follows from Lemma follows from Theorem follows immediately formal differential operator formally self adjoint formula Fourier function defined function f Haar measure Hence Hilbert space Hilbert-Schmidt operator identity inequality integral interval isometric isomorphism kernel L₁ L₁(R L₂(I L₂(R Lemma Let f linearly independent mapping matrix measure neighborhood non-zero norm operators in Hilbert orthogonal orthonormal basis Plancherel's theorem positive preceding lemma PROOF prove real axis real numbers satisfies sequence solution spectral spectral theorem square-integrable subspace Suppose T₁ T₂ theory To(t topology tr(T transform unique unitary vanishes vector zero