• Medientyp: Buch; Konferenzbericht
  • Titel: Brownian motion and its applications to mathematical analysis : École d'Été de Probabilités de Saint-Flour XLIII - 2013
  • Enthält: 1. Brownian motion2. Probabilistic proofs of classical theorems -- 3. Overview of the "hot spots" problem -- 4. Neumann eigenfunctions and eigenvalues -- 5. Synchronous and mirror couplings -- 6. Parabolic boundary Harnack principle -- 7. Scaling coupling -- 8. Nodal lines -- 9. Neumann heat kernel monotonicity -- 10. Reflected Brownian motion in time dependent domains.
  • Beteiligte: Burdzy, Krzysztof [VerfasserIn]
  • Veranstaltung: Ecole d'Eté de Probabilités
  • Erschienen: Cham; Heidelberg [u.a.]: Springer, 2014
  • Erschienen in: Lecture notes in mathematics ; 2106
  • Umfang: XII, 137 S.; Ill., graph. Darst
  • Sprache: Englisch
  • ISBN: 9783319043937
  • RVK-Notation: SI 850 : Lecture notes in mathematics
  • Schlagwörter: Brownsche Bewegung
  • Entstehung:
  • Anmerkungen: Literaturverz. S. 133 - 137
  • Beschreibung: These lecture notes provide an introduction to the applications of Brownian motion to analysis and, more generally, connections between Brownian motion and analysis. Brownian motion is a well-suited model for a wide range of real random phenomena, from chaotic oscillations of microscopic objects, such as flower pollen in water, to stock market fluctuations. It is also a purely abstract mathematical tool which can be used to prove theorems in "deterministic" fields of mathematics. The notes include a brief review of Brownian motion and a section on probabilistic proofs of classical theorems in analysis. The bulk of the notes are devoted to recent (post-1990) applications of stochastic analysis to Neumann eigenfunctions, Neumann heat kernel and the heat equation in time-dependent domains

    Brownian motion -- Probabilistic proofs of classical theorems -- Overview of the "hot spots" problem -- Neumann eigenfunctions and eigenvalues -- Synchronous and mirror couplings -- Parabolic boundary Harnack principle -- Scaling coupling -- Nodal lines -- Neumann heat kernel monotonicity -- Reflected Brownian motion in time dependent domains
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  • Signatur: SI 4220-2106
  • Barcode: 33726661