The conditions for spacetime supersymmetry of the heterotic in backgrounds with arbitrary metric, torsion, Yang-Mills and dilaton expectation values … - Andrew Strominger
" "The conditions for spacetime supersymmetry of the heterotic in backgrounds with arbitrary metric, torsion, Yang-Mills and dilaton expectation values are determined using the sigma model approach. The resulting equations are explicitly solved for the torsion and dilaton fields, and the remaining equations cast in a simple form. Previously unnoticed topological obstructions to solving these equations are found. The equations are shown to agree to leading order in perturbation theory with those derived in a field theory approach, provided one considers a more general ansatz than in previous analyses by allowing for a warp factor for the metric. Exact solutions with non-zero torsion are found, indicating a new class of finite sigma models.
About Andrew Strominger
(born July 30, 1955) is an American theoretical physicist, known for his research on quantum gravity and string theory. He has been awarded the (2012), the (2014), (2014), and the (2016).
Also Known As
Related quotes. More quotes will automatically load as you scroll down, or you can use the load more buttons.
Additional quotes by Andrew Strominger
Much of over the last century has concerned the reductionist quest to uncover the laws of nature at ever shorter distances. In the last decade it has become increasingly clear, from a variety of investigations, that this long march into the has neglected a surprising wealth of uncharted phenomena in the deep (IR). Far from being a boring place where all is trivial and well-understood, the deep IR in four-dimensional Minkowski space has a rich structure which we are only beginning to understand. Applications range from the IR divergence problem in , 𝒩=4 Yang-Mills and color memory in in black hole information and a possible fundamental new perspective on space, time and nature.
It is shown that many of the s of type II string theory and d = 11 supergravity can have boundaries on other p-branes. The rules for when this can and cannot occur are derived from charge conservation. For example it is found that membranes in d = 11 supergravity and IIA string theory can have boundaries on s. The boundary dynamics are governed by the self-dual d = 6 string. A collection of N parallel fivebranes contains 12N(N–1) self-dual strings which become tensionless as the fivebranes approach one another.
Advanced Search Filters
Filter search results by source, date, and more with our premium search tools.