On field redefinitions and exact solutions in string theory
Abstract
String backgrounds associated with gauged WZNW models in general depend non-trivially on . We note, however, that there exists a local covariant -dependent field redefinition that relates the exact metric-dilaton background corresponding to the model to its leading-order form ( black hole). As a consequence, there exists a `scheme' in which the string effective equations have the latter as an exact solution. However, the corresponding equation for the tachyon (which, like other Weyl anomaly coefficients, has scheme-dependent form) still contains corrections of all orders in . As a result, the `probes' (the tachyons) still feel the -corrected background. The field redefinitions we discuss contain the dilaton terms in the metric transformation law. We comment on exact forms of the duality transformation in different `schemes'.
Cite
@article{arxiv.hep-th/9308042,
title = {On field redefinitions and exact solutions in string theory},
author = {A. A. Tseytlin},
journal= {arXiv preprint arXiv:hep-th/9308042},
year = {2009}
}
Comments
11 pages, harvmac, CERN-TH.6970/93 [ A new section on tachyonic equation is added: while there exists a scheme where the exact D=2 `black hole' metric-dilaton background has semiclassical form, the equation for the tachyon still contains \alpha'-corrections, i.e. the tachyon still feels the \alpha'-corrected background ]