7,676 research outputs found
Closed Superstring in Noncommutative Compact Spacetime
In this paper we study the effects of noncommutativity on a closed
superstring propagating in the spacetime that is compactified on tori. The
effects of compactification and noncommutativity appear in the momentum,
quantization, supercurrent, super-conformal generators and in the boundary
state of the closed superstring emitted from a D-brane with the
NSNS background -field.Comment: 11 pages, Latex, no figur
3D gauged supergravity from SU(2) reduction of 6D supergravity
We obtain Yang-Mills gauged supergravity in three dimensions
from group manifold reduction of (1,0) six dimensional supergravity
coupled to an anti-symmetric tensor multiplet and gauge vector multiplets in
the adjoint of . The reduced theory is consistently truncated to 3D
supergravity coupled to bosonic and fermionic propagating degrees of freedom. This is in contrast to the
reduction in which there are also massive vector fields. The scalar manifold is
, and there is a gauge group. We then
construct Chern-Simons three dimensional gauged supergravity with scalar
manifold and
explicitly show that this theory is on-shell equivalent to the Yang-Mills
gauged supergravity theory obtained from the reduction,
after integrating out the scalars and gauge fields corresponding to the
translational symmetries .Comment: 24 pages, no figures, references added and typos correcte
On Subleading Contributions to the AdS/CFT Trace Anomaly
In the context of the AdS/CFT correspondence, we perform a direct computation
in AdS_5 supergravity of the trace anomaly of a d=4, N=2 SCFT. We find
agreement with the field theory result up to next to leading order in the 1/N
expansion. In particular, the order N gravitational contribution to the anomaly
is obtained from a Riemann tensor squared term in the 7-brane effective action
deduced from heterotic - type I duality. We also discuss, in the AdS/CFT
context, the order N corrections to the trace anomaly in d=4, N=4 SCFTs
involving SO or Sp gauge groups.Comment: 25 pages, LaTeX, v2: references adde
Duality Symmetries in N=2 Heterotic Superstring
We review the derivation and the basic properties of the perturbative
prepotential in N=2 compactifications of the heterotic superstring. We discuss
the structure of the perturbative monodromy group and the embedding of rigidly
supersymmetric monodromies associated with enhanced gauge groups, at both
perturbative and non-perturbative level.Comment: Based on talks presented at several conferences. 12 pages, LaTe
Worldsheet Realization of the Refined Topological String
A worldsheet realization of the refined topological string is proposed in
terms of physical string amplitudes that compute generalized N=2 F-terms of the
form F_{g,n} W^{2g}Y^{2n} in the effective supergravity action. These terms
involve the chiral Weyl superfield W and a superfield Y defined as an N=2
chiral projection of a particular anti-chiral T-bar vector multiplet. In
Heterotic and Type I theories, obtained upon compactification on the
six-dimensional manifold K3xT2, T is the usual K\"ahler modulus of the T2
torus. These amplitudes are computed exactly at the one-loop level in string
theory. They are shown to reproduce the correct perturbative part of the
Nekrasov partition function in the field theory limit when expanded around an
SU(2) enhancement point of the string moduli space. The two deformation
parameters epsilon_- and epsilon_+ of the Omega-supergravity background are
then identified with the constant field-strength backgrounds for the
anti-self-dual graviphoton and self-dual gauge field of the T-bar vector
multiplet, respectively.Comment: 35 pages, typos corrected, published in NP
On the perturbative corrections around D-string instantons
We study -threshold corrections in an eight dimensional S-dual
pair of string theories, as a prototype of dual string vacua with sixteen
supercharges. We show that the orbifold CFT description of D-string instantons
gives rise to a perturbative expansion similar to the one appearing on the
fundamental string side. By an explicit calculation, using the Nambu-Goto
action in the static gauge, we show that the first subleading term agrees
precisely on the two sides. We then give a general argument to show that the
agreement extends to all orders.Comment: 12 page
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