5,928 research outputs found
Killings, Duality and Characteristic Polynomials
In this paper the complete geometrical setting of (lowest order) abelian
T-duality is explored with the help of some new geometrical tools (the reduced
formalism). In particular, all invariant polynomials (the integrands of the
characteristic classes) can be explicitly computed for the dual model in terms
of quantities pertaining to the original one and with the help of the canonical
connection whose intrinsic characterization is given. Using our formalism the
physically, and T-duality invariant, relevant result that top forms are zero
when there is an isometry without fixed points is easily proved.Comment: 14 pages, Late
Time-dependent Mechanics and Lagrangian submanifolds of Dirac manifolds
A description of time-dependent Mechanics in terms of Lagrangian submanifolds
of Dirac manifolds (in particular, presymplectic and Poisson manifolds) is
presented. Two new Tulczyjew triples are discussed. The first one is adapted to
the restricted Hamiltonian formalism and the second one is adapted to the
extended Hamiltonian formalism
Starbursts and black hole masses in X-shaped radio galaxies: Signatures of a merger event?
We present new spectroscopic identifications of 12 X-shaped radio galaxies
and use the spectral data to derive starburst histories and masses of the
nuclear supermassive black holes in these galaxies. The observations were done
with the 2.1-m telescope of the Observatorio Astron\'omico Nacional at San
Pedro M\'artir, M\'exico. The new spectroscopic results extend the sample of
X-shaped radio galaxies studied with optical spectroscopy. We show that the
combined sample of the X-shaped radio galaxies has statistically higher
black-hole masses and older episodes of star formation than a control sample of
canonical double-lobed radio sources with similar redshifts and luminosities.
The data reveal enhanced star-formation activity in the X-shaped sample on the
timescales expected in galactic mergers. We discuss the results obtained in the
framework of the merger scenario.Comment: 9 pages, 10 figures, accepted for publication in Astronomy &
Astrophysic
Coherent delocalization: Views of entanglement in different scenarios
The concept of entanglement was originally introduced to explain correlations
existing between two spatially separated systems, that cannot be described
using classical ideas. Interestingly, in recent years, it has been shown that
similar correlations can be observed when considering different degrees of
freedom of a single system, even a classical one. Surprisingly, it has also
been suggested that entanglement might be playing a relevant role in certain
biological processes, such as the functioning of pigment-proteins that
constitute light-harvesting complexes of photosynthetic bacteria. The aim of
this work is to show that the presence of entanglement in all of these
different scenarios should not be unexpected, once it is realized that the very
same mathematical structure can describe all of them. We show this by
considering three different, realistic cases in which the only condition for
entanglement to exist is that a single excitation is coherently delocalized
between the different subsystems that compose the system of interest
On the Hamilton-Jacobi Theory for Singular Lagrangian Systems
We develop a Hamilton-Jacobi theory for singular lagrangian systems using the
Gotay-Nester-Hinds constraint algorithm. The procedure works even if the system
has secondary constraints.Comment: 36 page
Dynamics of momentum entanglement in lowest-order QED
We study the dynamics of momentum entanglement generated in the lowest-order
QED interaction between two massive spin-1/2 charged particles, which grows in
time as the two fermions exchange virtual photons. We observe that the degree
of generated entanglement between interacting particles with initial
well-defined momentum can be infinite. We explain this divergence in the
context of entanglement theory for continuous variables, and show how to
circumvent this apparent paradox. Finally, we discuss two different
possibilities of transforming momentum into spin entanglement, through
dynamical operations or through Lorentz boosts.Comment: 10 pages and 7 figures. Accepted in PR
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