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In [[mathematics]], in the field of [[harmonic analysis]],
the '''van der Corput lemma''' is an estimate for [[oscillatory integral]]s
named after the [[Netherlands|Dutch]] mathematician [[Johannes van der Corput|J. G. van der Corput]].
 
The following result
is stated by [[Elias M. Stein|E. Stein]]:<ref>Elias Stein, ''Harmonic Analysis: Real-variable Methods, Orthogonality and Oscillatory Integrals''. Princeton University Press, 1993. ISBN 0-691-03216-5</ref>
 
Suppose that a real-valued function <math>\phi(x)\,</math> is smooth in an open interval <math>(a,b)\,</math>,
and that <math>|\phi^{(k)}(x)|\ge 1</math> for all <math>x\in (a,b)</math>.
Assume that either <math>k\ge 2</math>, or that
<math>k=1\,</math> and <math>\phi'(x)\,</math> is monotone for <math>x\in\R</math>.
There is a constant <math>c_k\,</math>, which does not depend on <math>\phi\,</math>,
such that
:<math>
\Big|\int_a^b e^{i\lambda\phi(x)}\Big|\le c_k\lambda^{-1/k},
</math>
 
for any <math>\lambda\in\R</math>.
 
==Sublevel set estimates==
 
The van der Corput lemma is closely related to the [[sublevel set]] estimates
(see for example
<ref>M. Christ, ''Hilbert transforms along curves'', Ann. of Math. '''122''' (1985), 575--596</ref>),
which give the upper bound on the [[Measure (mathematics)|measure]] of the set
where a function takes values not larger than <math>\epsilon\,</math>.
 
Suppose that a real-valued function <math>\phi(x)\,</math> is smooth
on a finite or infinite interval <math>I\subset\R</math>,
and that <math>|\phi^{(k)}(x)|\ge 1\,</math> for all <math>x\in I</math>.
There is a constant <math>c_k\,</math>, which does not depend on <math>\phi\,</math>,
such that
for any <math>\epsilon\ge 0\,</math>
the measure of the sublevel set
<math>\{x\in I:|\phi(x)|\le\epsilon\}</math>
is bounded by <math>c_k\epsilon^{1/k}\,</math>.
 
==References==
<references />
 
[[Category:Inequalities]]
[[Category:Harmonic analysis]]
[[Category:Fourier analysis]]

Revision as of 20:40, 16 October 2013

In mathematics, in the field of harmonic analysis, the van der Corput lemma is an estimate for oscillatory integrals named after the Dutch mathematician J. G. van der Corput.

The following result is stated by E. Stein:[1]

Suppose that a real-valued function is smooth in an open interval , and that for all . Assume that either , or that and is monotone for . There is a constant , which does not depend on , such that

for any .

Sublevel set estimates

The van der Corput lemma is closely related to the sublevel set estimates (see for example [2]), which give the upper bound on the measure of the set where a function takes values not larger than .

Suppose that a real-valued function is smooth on a finite or infinite interval , and that for all . There is a constant , which does not depend on , such that for any the measure of the sublevel set is bounded by .

References

  1. Elias Stein, Harmonic Analysis: Real-variable Methods, Orthogonality and Oscillatory Integrals. Princeton University Press, 1993. ISBN 0-691-03216-5
  2. M. Christ, Hilbert transforms along curves, Ann. of Math. 122 (1985), 575--596