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An Introduction to the Uncertainty Principle - Hardy's Theorem on Lie Groups (Paperback, Softcover reprint of the original... An Introduction to the Uncertainty Principle - Hardy's Theorem on Lie Groups (Paperback, Softcover reprint of the original 1st ed. 2004)
Sundaram Thangavelu
R2,926 Discovery Miles 29 260 Ships in 10 - 15 working days

In 1932 Norbert Wiener gave a series of lectures on Fourier analysis at the Univer sity of Cambridge. One result of Wiener's visit to Cambridge was his well-known text The Fourier Integral and Certain of its Applications; another was a paper by G. H. Hardy in the 1933 Journalofthe London Mathematical Society. As Hardy says in the introduction to this paper, This note originates from a remark of Prof. N. Wiener, to the effect that "a f and g [= j] cannot both be very small". ... The theo pair of transforms rems which follow give the most precise interpretation possible ofWiener's remark. Hardy's own statement of his results, lightly paraphrased, is as follows, in which f is an integrable function on the real line and f is its Fourier transform: x 2 m If f and j are both 0 (Ix1e- /2) for large x and some m, then each is a finite linear combination ofHermite functions. In particular, if f and j are x2 x 2 2 2 both O(e- / ), then f = j = Ae- / , where A is a constant; and if one x 2 2 is0(e- / ), then both are null.

An Introduction to the Uncertainty Principle - Hardy's Theorem on Lie Groups (Hardcover, 2004 ed.): Sundaram Thangavelu An Introduction to the Uncertainty Principle - Hardy's Theorem on Lie Groups (Hardcover, 2004 ed.)
Sundaram Thangavelu
R3,073 Discovery Miles 30 730 Ships in 10 - 15 working days

In 1932 Norbert Wiener gave a series of lectures on Fourier analysis at the Univer sity of Cambridge. One result of Wiener's visit to Cambridge was his well-known text The Fourier Integral and Certain of its Applications; another was a paper by G. H. Hardy in the 1933 Journalofthe London Mathematical Society. As Hardy says in the introduction to this paper, This note originates from a remark of Prof. N. Wiener, to the effect that "a f and g [= j] cannot both be very small". ... The theo pair of transforms rems which follow give the most precise interpretation possible ofWiener's remark. Hardy's own statement of his results, lightly paraphrased, is as follows, in which f is an integrable function on the real line and f is its Fourier transform: x 2 m If f and j are both 0 (Ix1e- /2) for large x and some m, then each is a finite linear combination ofHermite functions. In particular, if f and j are x2 x 2 2 2 both O(e- / ), then f = j = Ae- / , where A is a constant; and if one x 2 2 is0(e- / ), then both are null.

Harmonic Analysis on the Heisenberg Group (Hardcover, 1998 ed.): Sundaram Thangavelu Harmonic Analysis on the Heisenberg Group (Hardcover, 1998 ed.)
Sundaram Thangavelu
R3,593 Discovery Miles 35 930 Ships in 10 - 15 working days

The Heisenberg group plays an important role in several branches of mathematics, such as representation theory, partial differential equations, number theory, several complex variables and quantum mechanics. This monograph deals with various aspects of harmonic analysis on the Heisenberg group, which is the most commutative among the non-commutative Lie groups, and hence gives the greatest opportunity for generalizing the remarkable results of Euclidean harmonic analysis. The aim of this text is to demonstrate how the standard results of abelian harmonic analysis take shape in the non-abelian setup of the Heisenberg group. Thangavelu 's exposition is clear and well developed, and leads to several problems worthy of further consideration. Any reader who is interested in pursuing research on the Heisenberg group will find this unique and self-contained text invaluable.

Harmonic Analysis on the Heisenberg Group (Paperback, Softcover reprint of the original 1st ed. 1998): Sundaram Thangavelu Harmonic Analysis on the Heisenberg Group (Paperback, Softcover reprint of the original 1st ed. 1998)
Sundaram Thangavelu
R3,441 Discovery Miles 34 410 Ships in 10 - 15 working days

The Heisenberg group plays an important role in several branches of mathematics, such as representation theory, partial differential equations, number theory, several complex variables and quantum mechanics. This monograph deals with various aspects of harmonic analysis on the Heisenberg group, which is the most commutative among the non-commutative Lie groups, and hence gives the greatest opportunity for generalizing the remarkable results of Euclidean harmonic analysis. The aim of this text is to demonstrate how the standard results of abelian harmonic analysis take shape in the non-abelian setup of the Heisenberg group. Thangavelu's exposition is clear and well developed, and leads to several problems worthy of further consideration. Any reader who is interested in pursuing research on the Heisenberg group will find this unique and self-contained text invaluable.

Lectures on Hermite and Laguerre Expansions. (MN-42), Volume 42 (Paperback): Sundaram Thangavelu Lectures on Hermite and Laguerre Expansions. (MN-42), Volume 42 (Paperback)
Sundaram Thangavelu
R2,078 R1,897 Discovery Miles 18 970 Save R181 (9%) Ships in 12 - 17 working days

The interplay between analysis on Lie groups and the theory of special functions is well known. This monograph deals with the case of the Heisenberg group and the related expansions in terms of Hermite, special Hermite, and Laguerre functions. The main thrust of the book is to develop a concrete Littlewood-Paley-Stein theory for these expansions and use the theory to prove multiplier theorems. The questions of almost-everywhere and mean convergence of Bochner-Riesz means are also treated. Most of the results in this monograph appear for the first time in book form.

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