63 research outputs found
Wedge states in string field theory
The wedge states form an important subalgebra in the string field theory. We
review and further investigate their various properties. We find in particular
a novel expression for the wedge states, which allows to understand their star
products purely algebraically. The method allows also for treating the matter
and ghost sectors separately. It turns out, that wedge states with different
matter and ghost parts violate the associativity of the algebra. We introduce
and study also wedge states with insertions of local operators and show how
they are useful for obtaining exact results about convergence of level
truncation calculations. These results help to clarify the issue of anomalies
related to the identity and some exterior derivations in the string field
algebra.Comment: 40 pages, 9 figures, v3: section 3.3 rewritten, few other
corrections, set in JHEP styl
String Field Theory Vertices for Fermions of Integral Weight
We construct Witten-type string field theory vertices for a fermionic first
order system with conformal weights (0,1) in the operator formulation using
delta-function overlap conditions as well as the Neumann function method. The
identity, the reflector and the interaction vertex are treated in detail paying
attention to the zero mode conditions and the U(1) charge anomaly. The Neumann
coefficients for the interaction vertex are shown to be intimately connected
with the coefficients for bosons allowing a simple proof that the
reparametrization anomaly of the fermionic first order system cancels the
contribution of two real bosons. This agrees with their contribution c=-2 to
the central charge. The overlap equations for the interaction vertex are shown
to hold. Our results have applications in N=2 string field theory, Berkovits'
hybrid formalism for superstring field theory, the \eta\xi-system and the
twisted bc-system used in bosonic vacuum string field theory.Comment: 1+28 pages, minor improvements, references adde
Construction of the Vacuum String Field Theory on a non-BPS Brane
In the framework of the Sen conjectures a construction of vacuum superstring
field theory on a non-BPS brane is discussed. A distinguished feature of this
theory is a presence of a ghost kinetic operator mixing GSO+/- sectors. A
candidate for such kinetic operator with zero cohomology is discussed.Comment: expression for the pure ghost kinetic operator corrected, Comments
added; 21 pages, 1 figure, LaTeX 2
Exact Solutions of Open Bosonic String Field Theory
In this paper we present two solutions of open bosonic string field theory
defined on D0-brane background that correspond to the change of the D0-brane
position in the transverse space.Comment: 18 page
String Field Theory Projectors for Fermions of Integral Weight
The interaction vertex for a fermionic first order system of weights (1,0)
such as the twisted bc-system, the fermionic part of N=2 string field theory
and the auxiliary \eta\xi system of N=1 strings is formulated in the Moyal
basis. In this basis, the Neumann matrices are diagonal; as usual, the
eigenvectors are labeled by \kappa\in\R. Oscillators constructed from these
eigenvectors make up two Clifford algebras for each nonzero value of \kappa.
Using a generalization of the Moyal-Weyl map to the fermionic case, we classify
all projectors of the star-algebra which factorize into projectors for each
\kappa-subspace. At least for the case of squeezed states we recover the full
set of bosonic projectors with this property. Among the subclass of ghost
number-homogeneous squeezed state projectors, we find a single class of
BPZ-real states parametrized by one (nearly) arbitrary function of \kappa. This
class is shown to contain the generalized butterfly states. Furthermore, we
elaborate on sufficient and necessary conditions which have to be fulfilled by
our projectors in order to constitute surface states. As a byproduct we find
that the full star product of N=2 string field theory translates into a
canonically normalized continuous tensor product of Moyal-Weyl products up to
an overall normalization. The divergent factors arising from the translation to
the continuous basis cancel between bosons and fermions in any even dimension.Comment: LaTeX, 1+23 pages, minor improvements, references adde
Exact Solutions in SFT and Marginal Deformation in BCFT
In this note we will study solution of open bosonic string field theory based
on action of operators from chiral algebra of boundary conformal field theory
on identity element of string field theory star algebra. We will demonstrate
that the string field theory action for fluctuation fields around this
classical solution can be mapped to the string field theory action defined
through the new boundary conformal field theory that arises from the original
one through the marginal deformation inserted on the world-sheet boundary.Comment: 15 pages, references adde
Edge magnetoplasmons in periodically modulated structures
We present a microscopic treatment of edge magnetoplasmons (EMP's) within the
random-phase approximation for strong magnetic fields, low temperatures, and
filling factor , when a weak short-period superlattice potential is
imposed along the Hall bar. The modulation potential modifies both the spatial
structure and the dispersion relation of the fundamental EMP and leads to the
appearance of a novel gapless mode of the fundamental EMP. For sufficiently
weak modulation strengths the phase velocity of this novel mode is almost the
same as the group velocity of the edge states but it should be quite smaller
for stronger modulation. We discuss in detail the spatial structure of the
charge density of the renormalized and the novel fundamental EMP's.Comment: 8 pages, 4 figure
Abelian and nonabelian vector field effective actions from string field theory
The leading terms in the tree-level effective action for the massless fields
of the bosonic open string are calculated by integrating out all massive fields
in Witten's cubic string field theory. In both the abelian and nonabelian
theories, field redefinitions make it possible to express the effective action
in terms of the conventional field strength. The resulting actions reproduce
the leading terms in the abelian and nonabelian Born-Infeld theories, and
include (covariant) derivative corrections.Comment: 49 pages, 1 eps figur
Rolling Tachyon
We discuss construction of classical time dependent solutions in open string
(field) theory, describing the motion of the tachyon on unstable D-branes.
Despite the fact that the string field theory action contains infinite number
of time derivatives, and hence it is not a priori clear how to set up the
initial value problem, the theory contains a family of time dependent solutions
characterized by the initial position and velocity of the tachyon field. We
write down the world-sheet action of the boundary conformal field theories
associated with these solutions and study the corresponding boundary states.
For D-branes in bosonic string theory, the energy momentum tensor of the system
evolves asymptotically towards a finite limit if we push the tachyon in the
direction in which the potential has a local minimum, but hits a singularity if
we push it in the direction where the potential is unbounded from below.Comment: LaTeX file, 20 pages, references adde
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