Pacific Journal of Mathematics

Notes on the Feynman integral. III. The Schroedinger equation.

G. W. Johnson and D. L. Skoug
Source: Pacific J. Math. Volume 105, Number 2 (1983), 321-358.
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Primary Subjects: 81C35
Secondary Subjects: 28B05, 46G99, 58D30
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Links and Identifiers

Permanent link to this document: http://projecteuclid.org/euclid.pjm/1102723333
Zentralblatt MATH identifier: 0505.28010
Zentralblatt MATH identifier: 0459.28013
Mathematical Reviews number (MathSciNet): MR691608

References

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Zentralblatt MATH: 0366.28004
[2] S. Albeverio and R. Heegh-Krohn, Feynman path integrals and the corresponding method of stationary phase, in Feynman Path Integrals, Marseille, 1978, Springer Lecture Notes in Physics, Vol. 106, Berlin, 1979,3-57.
Mathematical Reviews (MathSciNet): MR80k:81035
Zentralblatt MATH: 0424.28014
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[5] R. H. Cameron and D. A. Storvick, Analytic Feynman integral solutions of an integral equation related to the Schroedinger equation, J. D'Analyse Math., 38 (1980), 34-66.
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[6] S. D. Chatterji, Disintegration of Measures and Lifting, in Vector and Operator Valued Measures and Applications, Academic Press, New York, 1973, 69-83.
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[9] G. W. Johnson, The equivalence of two approaches to the Feynman integral, to appear in J. Math. Physics.
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[10] G. W. Johnson, An unsymmetric Fubini theorem, submitted for publication.
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[11] G. W. Johnson and D. L. Skoug, Scale-invariant measurability in Wiener space, Pacific J. Math., 83 (1979), 157-176.
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[12] G. W. Johnson and D. L. Skoug, Notes on the Feynman integral, I, Pacific J. Math., 93 (1981), 313-324.
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[13] G. W. Johnson and D. L. Skoug, Notes on the Feynman integral, II, J. Functional Analysis, 41 (1981), 277-289.
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[16] R. E. A. C. Paley, N. Wiener, and A. Zygmund, Notes on random functions, Math. Zeit, 37(1933), 647-688.
[17] A. Truman, The Polygonal Path formulation of the Feynman path integral, in Feynman Path Integrals, Marseille, 1978, Springer Lecture Notes in Physics, Vol. 106, Berlin, 1979, 73-102.
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Zentralblatt MATH: 0412.28009

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