On the Entropy of Strings and Branes
Ram Brustein, Yoav Zigdon

TL;DR
This paper explores the entropy of strings and branes in various geometries, showing it relates to Noether charges and matches classical black hole entropy formulas, including higher-curvature and AdS cases.
Contribution
It establishes a boundary-based method to compute string and brane entropy, connecting it to Noether charges and classical black hole entropy, including higher-order corrections.
Findings
String entropy proportional to Noether charge in T-dual time.
Black hole entropy matches Wald and Bekenstein-Hawking formulas.
Entropy of strings and branes equals black hole entropy in various geometries.
Abstract
We show that the entropy of strings that wind around the Euclidean time circle is proportional to the Noether charge associated with translations along the T-dual time direction. We consider an effective target-space field theory which includes a large class of terms in the action with various modes, interactions and corrections. The entropy and the Noether charge are shown to depend only on the values of fields at the boundary of space. The classical entropy, which is proportional to the inverse of Newton's constant, is then calculated by evaluating the appropriate boundary term for various geometries with and without a horizon. We verify, in our framework, that for higher-curvature pure gravity theories, the Wald entropy of static neutral black hole solutions is equal to the entropy derived from the Gibbons-Hawking boundary term. We then proceed to discuss horizonless…
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Taxonomy
TopicsScientific Research and Discoveries
