1,800 research outputs found
Bosonic stimulation of cold 1s excitons into a harmonic potential minimum in CuO
Density distribution of cold exciton clouds generated into a strain-induced
potential well by two-photon excitation in CuO is studied at 2 K. We find
that an anomalous spike, which can be interpreted as accumulation of the
excitons into the ground state, emerges at the potential minimum. The
accumulation can be due to stimulated scattering of cold excitons, mediated by
acoustic phonon emission. Possibility of the formation of the thermodynamic
Bose-Einstein condensate of paraexcitons has been discussed.Comment: Submitted to Solid State Communications on 17 December, 200
Superconductivity under pressure in the Dirac semimetal PdTe2
The Dirac semimetal PdTe was recently reported to be a type-I
superconductor (1.64 K, mT) with unusual
superconductivity of the surface sheath. We here report a high-pressure study,
GPa, of the superconducting phase diagram extracted from
ac-susceptibility and transport measurements on single crystalline samples.
shows a pronounced non-monotonous variation with a maximum 1.91 K around 0.91 GPa, followed by a gradual decrease to 1.27 K at 2.5 GPa.
The critical field of bulk superconductivity in the limit ,
, follows a similar trend and consequently the -curves
under pressure collapse on a single curve: .
Surface superconductivity is robust under pressure as demonstrated by the large
superconducting screening signal that persists for applied dc-fields . Surprisingly, for GPa the superconducting transition
temperature at the surface is larger than of the bulk. Therefore
surface superconductivity may possibly have a non-trivial nature and is
connected to the topological surface states detected by ARPES. We compare the
measured pressure variation of with recent results from band structure
calculations and discuss the importance of a Van Hove singularity.Comment: manuscript 9 pages with 8 figures + supplemental material 3 pages
with 6 figure
Condensation of Excitons in Cu2O at Ultracold Temperatures: Experiment and Theory
We present experiments on the luminescence of excitons confined in a
potential trap at milli-Kelvin bath temperatures under cw-excitation. They
reveal several distinct features like a kink in the dependence of the total
integrated luminescence intensity on excitation laser power and a bimodal
distribution of the spatially resolved luminescence. Furthermore, we discuss
the present state of the theoretical description of Bose-Einstein condensation
of excitons with respect to signatures of a condensate in the luminescence. The
comparison of the experimental data with theoretical results with respect to
the spatially resolved as well as the integrated luminescence intensity shows
the necessity of taking into account a Bose-Einstein condensed excitonic phase
in order to understand the behaviour of the trapped excitons.Comment: 41 pages, 23 figure
Supersymmetric AdS_3, AdS_2 and Bubble Solutions
We present new supersymmetric AdS_3 solutions of type IIB supergravity and
AdS_2 solutions of D=11 supergravity. The former are dual to conformal field
theories in two dimensions with N=(0,2) supersymmetry while the latter are dual
to conformal quantum mechanics with two supercharges. Our construction also
includes AdS_2 solutions of D=11 supergravity that have non-compact internal
spaces which are dual to three-dimensional N=2 superconformal field theories
coupled to point-like defects. We also present some new bubble-type solutions,
corresponding to BPS states in conformal theories, that preserve four
supersymmetries.Comment: v2: 33 pages, published version in JHE
Coset Construction of Gravitational Instantons
We study Ricci-flat metrics on non-compact manifolds with the exceptional
holonomy . We concentrate on the metrics which are defined on
. If the homogeneous coset spaces have weak ,
SU(3) holonomy, the manifold may have
holonomy metrics. Using the formulation with vector fields, we investigate the
metrics with holonomy on . We have found the explicit volume-preserving vector fields on
these manifold using the elementary coordinate parameterization. This
construction is essentially dual to solving the generalized self-duality
condition for spin connections. We present most general differential equations
for each coset. Then, we develop the similar formulation in order to calculate
metrics with holonomyComment: 29 pages, no figure; (v2) Errors are corrected ; (v3) Some
explanations are added. More general differential equations for SU(3)/U(1)
coset are give
Multiscale - Patient-Specific Artery and Atherogenesis Models
In this work, we present a platform for the development of multiscale patient-specific artery and atherogenesis models. The platform, called ARTool, integrates technologies of 3-D image reconstruction from various image modalities, blood flow and biological models of mass transfer, plaque characterization, and plaque growth. Patient images are acquired for the development of the 3-D model of the patient specific arteries. Then, blood flow ismodeled within the arterial models for the calculation of the wall shear stress distribution (WSS). WSS is combined with other patient-specific parameters for the development of the plaque progression models. Real-time simulation can be performed for same cases in grid environment. The platform is evaluated using both animal and human data
Exact Description of D-branes via Tachyon Condensation
We examine the fluctuations around a Dp-brane solution in an unstable D-brane
system using boundary states and also boundary string field theory. We show
that the fluctuations correctly reproduce the fields on the Dp-brane. Plugging
these into the action of the unstable D-brane system, we recover not only the
tension and RR charge, but also full effective action of the Dp-brane exactly.
Our method works for general unstable D-brane systems and provides a simple
proof of D-brane descent/ascent relations under the tachyon condensation. In
the lowest dimensional unstable D-brane system, called K-matrix theory,
D-branes are described in terms of operator algebra. We show the equivalence of
the geometric and algebraic descriptions of a D-brane world-volume manifold
using the equivalence between path integral and operator formulation of the
boundary quantum mechanics. As a corollary, the Atiyah-Singer index theorem is
naturally obtained by looking at the coupling to RR-fields. We also generalize
the argument to type I string theory.Comment: 63 pages, LaTeX, no figures, v2: references adde
M-Theory solutions with AdS factors
Solutions of D=7 maximal gauged supergravity are constructed with metrics
that are a product of a n-dimensional anti-de Sitter (AdS) space, with
n=2,3,4,5, and certain Einstein manifolds. The gauge fields have the same form
as in the recently constructed solutions describing the near-horizon limits of
M5-branes wrapping supersymmetric cycles. The new solutions do not preserve any
supersymmetry and can be uplifted to obtain new solutions of D=11 supergravity,
which are warped and twisted products of the D=7 metric with a squashed
four-sphere. Some aspects of the stability of the solutions are discussed.Comment: 30 pages. References adde
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