Related papers: Classical limit of the Kepler problem and the cont…
Paper withdrawn by authors. See new version in this same listing.
This paper has been withdrawn by the author. The most updated version can be accessed by arXiv:1806.07290.
For alpha in [0,n) we demonstrate the failure of energy reversal for the vector of alpha-fractional Riesz transforms, and more generally for any vector of alpha-fractional convolution singular integrals having a kernel with vanishing…
This paper has been withdrawn due to disagreement of suggested results and methods between authors.
We explore a particular way of reformulating quantum theory in classical terms, starting with phase space rather than Hilbert space, and with actual probability distributions rather than quasiprobabilities. The classical picture we start…
The work is devoted to the relaxation limit in larger Besov spaces for compressible Euler equations, which contains previous results in Sobolev spaces and Besov spaces with critical regularity. Such an extension depends on a revision of…
This paper has been withdrawn because it is a duplicate of [math/0609208].
In this paper we clarify and generalise previous work by Moser and Belbruno concerning the link between the motions in the classical Kepler problem and geodesic motion on spaces of constant curvature. Both problems can be formulated as…
The article is taken out.
This paper has been withdrawn.
The paper has been withdrawn
This paper has been withdrawn due to an error, and no further revisions will be made.
This paper was withdrawn by the authors due to serious flaws in the physics that render the results meaningless.
The paper has been withdrawn by the author due to a gap in Proof of Theorem 1.1.
This paper has been withdrawn by the author(s) and included into the new version of "An extension theorem for separately holomorphic functions with singularities", math.CV/0104089.
This paper has been withdrawn by the author
This paper has been withdrawn by the authors due to a crucial error in the proof of the main result. In a new manuscript (with two new authors) available at arXiv:1010.2791v1 this problem has been resolved.
In nonrelativistic approximation one-dimensional motion of Sommerfeld sphere in the case of potential barrier is numerically investigated. The effect of classical tunneling is confirmed once more - Sommerfeld sphere overcomes the barrier…
This paper has been withdrawn by the author due to a crucial error in the Proof of Theorem 0.3
The paper is withdrawn by the authors and replaced be an improved and extended version arxiv: 0812.2968