54,241 research outputs found
Gauge Symmetry, T-Duality and Doubled Geometry
String compactifications with T-duality twists are revisited and the gauge
algebra of the dimensionally reduced theories calculated. These reductions can
be viewed as string theory on T-fold backgrounds, and can be formulated in a
`doubled space' in which each circle is supplemented by a T-dual circle to
construct a geometry which is a doubled torus bundle over a circle. We discuss
a conjectured extension to include T-duality on the base circle, and propose
the introduction of a dual base coordinate, to give a doubled space which is
locally the group manifold of the gauge group. Special cases include those in
which the doubled group is a Drinfel'd double. This gives a framework to
discuss backgrounds that are not even locally geometric.Comment: 16 page
Flight craft Patent
Designing spacecraft for flight into space, atmospheric reentry, and landing at selected site
Algorithm based comparison between the integral method and harmonic analysis of the timing jitter of diode-based and solid-state pulsed laser sources
AbstractA comparison between two methods of timing jitter calculation is presented. The integral method utilizes spectral area of the single side-band (SSB) phase noise spectrum to calculate root mean square (rms) timing jitter. In contrast the harmonic analysis exploits the uppermost noise power in high harmonics to retrieve timing fluctuation. The results obtained show that a consistent timing jitter of 1.2ps is found by the integral method and harmonic analysis in gain-switched laser diodes with an external cavity scheme. A comparison of the two approaches in noise measurement of a diode-pumped Yb:KY(WO4)2 passively mode-locked laser is also shown in which both techniques give 2ps rms timing jitter
The nucleon to Delta electromagnetic transition form factors in lattice QCD
The electromagnetic nucleon to Delta transition form factors are evaluated
using two degenerate flavors of dynamical Wilson fermions and using dynamical
sea staggered fermions with domain wall valence quarks. The two subdominant
quadrupole form factors are evaluated for the first time in full QCD to
sufficient accuracy to exclude a zero value, which is taken as a signal for
deformation in the nucleon-Delta system. For the Coulomb quadrupole form factor
the unquenched results show deviations from the quenched results at low q^2
bringing dynamical lattice results closer to experiment, thereby confirming the
importance of pion cloud contributions on this quantity.Comment: 15 pages, 8 Figure
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