Articles
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03/29/2005--
03/29/2005
A Model for Multidimensional Delayed Detonations in SN Ia Explosions
We show that a flame tracking/capturing scheme originally developed for
deflagration fronts can be used to model thermonuclear detonations in
multidimensional explosion simulations of type Ia supernovae. After testing the
accuracy of the front model, we present a set of two-dimensional simulations of
delayed detonations with a physically motivated off-center
deflagration-detonation-transition point. Furthermore, we demonstrate the
ability of the front model to reproduce the full range of possible interactions
of the detonation with clumps of burned material. This feature is crucial for
assessing the viability of the delayed detonation scenario.
08/31/1995--
08/31/1995
Gaugino Condensation and the Vacuum Expectation Value of the Dilaton
The mechanism of gaugino condensation has emerged as a prime candidate for
supersymmetry breakdown in low energy effective supergravity (string) models.
One of the open questions in this approach concerns the size of the gauge
coupling constant which is dynamically fixed through the vev of the dilaton. We
argue that a nontrivial gauge kinetic function $f(S)$ could solve the potential
problem of a runaway dilaton. The actual form of $f(S)$ might be constrained by
symmetry arguments.
07/09/1997--
07/09/1997
Numerical Investigation of Scaling Properties of Turbulent Premixed Flames
Gibson scaling and related properties of flame-surface geometry in turbulent
premixed combustion are demonstrated using a novel computational model,
Deterministic Turbulent Mixing (DTM). In DTM, turbulent advection is
represented by a sequence of maps applied to the computational domain. The
structure of the mapping sequence incorporates pertinent scaling properties of
the turbulent cascade. Here, combustion in Kolmogorov turbulence
(kinetic-energy cascade) and in Bolgiano-Obukhov convective turbulence
(potential-energy cascade) is simulated. Implications with regard to chemical
flames and astrophysical (thermonuclear) flames are noted.
10/27/1994--
10/27/1994
S-Dual Gaugino Condensation and Supersymmetry Breaking
The principle of S-duality is used to incorporate gaugino condensates into
effective supergravity (superstring) Lagrangians. We discuss two
implementations of S-duality which differ in the way the coupling constant is
transformed. Both solve the problem of the runaway dilaton and lead to
satisfactory supersymmetry breaking in models with a {\em single} gaugino
condensate. The breakdown of supersymmetry is intimately related to a
nontrivial transformation of the condensate under T-duality.
09/03/2018--
05/23/2017
Screening and Topological Order in Thin Superconducting Films
We derive an effective two-dimensional low-energy theory for thin
superconducting films coupled to a three-dimensional fluctuating
electromagnetic field. Using this theory we discuss plasma oscil- lations,
interactions between charges and vortices and extract the energy of a vortex.
Having found that the effective theory properly describes the long distance
physics, we then use it to investigate to what extent the superconducting film
is a topologically ordered phase of matter.
04/23/2024--
05/24/2013
Showcasing straight-line programs with memory via matrix Bruhat decomposition
We suggest that straight-line programs designed for algebraic computations
should be accompanied by a comprehensive complexity analysis that takes into
account both the number of fundamental algebraic operations needed, as well as
memory requirements arising during evaluation. We introduce an approach for
formalising this idea and, as illustration, construct and analyse straight-line
programs for the Bruhat decomposition of $d\times d$ matrices with determinant
$1$ over a finite field of order $q$ that have length $O(d^2\log(q))$ and
require storing only $O(\log(q))$ matrices during evaluation.
04/07/2014--
04/07/2014
Macroscopically deterministic, Markovian thermalization in finite quantum spin systems
A key feature of non-equilibrium thermodynamics is the Markovian,
deterministic relaxation of coarse observables such as, for example, the
temperature difference between two macroscopic objects which evolves
independently of almost all details of the initial state. We demonstrate that
the unitary dynamics for moderately sized spin-1/2 systems may yield the same
type of relaxation dynamics for a given magnetization difference. This
observation might contribute to the understanding of the emergence of
thermodynamics within closed quantum systems.
07/06/2016--
01/18/2016
The challenge and promise of software citation for credit, identification, discovery, and reuse
In this article, we present the challenge of software citation as a method to
ensure credit for and identification, discovery, and reuse of software in
scientific and engineering research. We discuss related work and key
challenges/research directions, including suggestions for metadata necessary
for software citation.
03/19/2019--
03/19/2019
The icosahedra of edge length 1
Retaining the combinatorial Euclidean structure of a regular icosahedron,
namely the 20 equiangular (planar) triangles, the 30 edges of length 1, and the
12 different vertices together with the incidence structure, we investigate
variations of the regular icosahedron admitting self-intersections of faces. We
determine all rigid equivalence classes of these icosahedra with non-trivial
automorphism group and find one curve of flexible icosahedra. Visualisations
and explicit data for this paper are available under
http://algebra.data.rwth-aachen.de/Icosahedra/visualplusdata.html.
08/23/2019--
08/23/2019
A family of hemisystems on the parabolic quadrics
We constuct a family of hemisystems of the parabolic quadric $\mathcal{Q}(2d,
q)$, for all ranks $d \ge 2$ and all odd prime powers $q$, that admit
$\Omega_3(q) \cong \mathrm{PSL}_2(q)$. This yields the first known construction
for $d \ge 4$.
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