7 research outputs found
Massless D-strings and moduli stabilization in type I cosmology
We consider the cosmological evolution induced by the free energy F of a gas
of maximally supersymmetric heterotic strings at finite temperature and weak
coupling in dimension D>=4. We show that F, which plays the role of an
effective potential, has minima associated to enhanced gauge symmetries, where
all internal moduli can be attracted and dynamically stabilized. Using the fact
that the heterotic/type I S-duality remains valid at finite temperature and can
be applied at each instant of a quasi-static evolution, we find in the dual
type I cosmology that all internal NS-NS and RR moduli in the closed string
sector and the Wilson lines in the open string sector can be stabilized. For
the special case of D=6, the internal volume modulus remains a flat direction,
while the dilaton is stabilized. An essential role is played by light D-string
modes wrapping the internal manifold and whose contribution to the free energy
cannot be omitted, even when the type I string is at weak coupling. As a
result, the order of magnitude of the internal radii expectation values on the
type I side is (lambda_I alpha')^{1/2}, where lambda_I is the ten-dimensional
string coupling. The non-perturbative corrections to the type I free energy can
alternatively be described as effects of "thermal E1-instantons", whose
worldsheets wrap the compact Euclidean time cycle.Comment: 39 pages, 1 figur
Spinor-Vector Duality in Heterotic String Orbifolds
The three generation heterotic-string models in the free fermionic
formulation are among the most realistic string vacua constructed to date,
which motivated their detailed investigation. The classification of free
fermion heterotic string vacua has revealed a duality under the exchange of
spinor and vector representations of the SO(10) GUT symmetry over the space of
models. We demonstrate the existence of the spinor-vector duality using
orbifold techniques, and elaborate on the relation of these vacua to free
fermionic models.Comment: 20 pages. v2 minor corrections. Version to appear on JHEP. v3
misprints correcte
Heterotic T-folds with a small number of neutral moduli
We discuss non-geometric supersymmetric heterotic string models in D=4, in
the framework of the free fermionic construction. We perform a systematic scan
of models with four a priori left-right asymmetric Z_2 projections and shifts.
We analyze some 2^{20} models, identifying 18 inequivalent classes and
addressing variants generated by discrete torsions. They do not contain
geometrical or trivial neutral moduli, apart from the dilaton. However, we show
the existence of flat directions in the form of exactly marginal deformations
and identify patterns of symmetry breaking where product gauge groups, realized
at level one, are broken to their diagonal at higher level. We also describe an
"inverse Gepner map" from Heterotic to Type II models that could be used, in
certain non geometric settings, to define "effective" topological invariants.Comment: 37 page