Consider a quantum particle trapped between a curved layer of constant width built over a complete, non-compact, |$\mathcal C^2$| smooth surface embedded in |$\mathbb {R}^3$|. We assume that the surface is asymptotically flat in the sense that the second fundamental form vanishes at infinity, and that the surface is not totally geodesic. This geometric setting is known as a quantum layer. We consider the quantum particle to be governed by the Dirichlet Laplacian as Hamiltonian. Our work concerns the existence of bound states with energy beneath the essential spectrum, which implies the existence of discrete spectrum. We first prove that if the Gauss curvature is integrable, and the surface is weakly κ-parabolic, then the discrete spectrum is non-empty. This result implies that if the total Gauss curvature is non-positive, then the discrete spectrum is non-empty. Next, we prove that if the Gauss curvature is non-negative, then the discrete spectrum is non-empty. Finally, we prove that if the surface is parabolic, then the discrete spectrum is non-empty if the layer is sufficiently thin.
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July 2012
Research Article|
July 31 2012
On the discrete spectrum of quantum layers Available to Purchase
Zhiqin Lu;
Zhiqin Lu
a)
1Department of Mathematics,
University of California
, Irvine, Irvine, California 92697, USA
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Julie Rowlett
Julie Rowlett
b)
2
Max Planck Institut für Mathematik
, Vivatgasse 7, 53111 Bonn, Germany
Search for other works by this author on:
Zhiqin Lu
1,a)
Julie Rowlett
2,b)
1Department of Mathematics,
University of California
, Irvine, Irvine, California 92697, USA
2
Max Planck Institut für Mathematik
, Vivatgasse 7, 53111 Bonn, Germany
a)
Electronic mail: [email protected].
b)
Electronic mail: [email protected].
J. Math. Phys. 53, 073519 (2012)
Article history
Received:
November 09 2011
Accepted:
June 20 2012
Citation
Zhiqin Lu, Julie Rowlett; On the discrete spectrum of quantum layers. J. Math. Phys. 1 July 2012; 53 (7): 073519. https://doi.org/10.1063/1.4736412
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