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Phys. Rev. D 70, 064018 (2004) [9 pages]

Semiclassical and quantum field theoretic bounds for traversable Lorentzian stringy wormholes

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Kamal Kanti Nandi1,3,*, Yuan-Zhong Zhang2,3,†, and K. B. Vijaya Kumar4,‡
1Department of Mathematics, University of North Bengal, Darjeeling (W.B.) 734 430, India
2CCAST (World Laboratory), P.O. Box 8730, Beijing 100080, China
3Institute of Theoretical Physics, Chinese Academy of Sciences, P.O. Box 2735, Beijing 100080, China
4Department of Physics, University of Mangalore, Mangalore 574 199, India

Received 11 July 2004; published 15 September 2004

A lower bound on the size of a Lorentzian wormhole can be obtained by semiclassically introducing the Planck cutoff on the magnitude of tidal forces (Horowitz-Ross constraint). Also, an upper bound is provided by the quantum field theoretic constraint in the form of the Ford-Roman Quantum Inequality for massless minimally coupled scalar fields. To date, however, exact static solutions belonging to this scalar field theory have not been worked out to verify these bounds. To fill this gap, we examine the wormhole features of two examples from the Einstein frame description of the vacuum low energy string theory in four dimensions which is the same as the minimally coupled scalar field theory. Analyses in this paper support the conclusion of Ford and Roman that wormholes in this theory can have sizes that are indeed only a few order of magnitudes larger than the Planck scale. It is shown that the two types of bounds are also compatible. In the process, we point out a “wormhole” analog of naked black holes.

© 2004 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevD.70.064018
DOI:
10.1103/PhysRevD.70.064018
PACS:
04.20.Gz, 04.50.+h

*E-mail: kamalnandi@hotmail.com

E-mail: yzhang@itp.ac.cn

E-mail: kbvijayakumar@yahoo.com