33,910 research outputs found
Large Zero Autocorrelation Zone of Golay Sequences and -QAM Golay Complementary Sequences
Sequences with good correlation properties have been widely adopted in modern
communications, radar and sonar applications. In this paper, we present our new
findings on some constructions of single -ary Golay sequence and -QAM
Golay complementary sequence with a large zero autocorrelation zone, where
is an arbitrary even integer and is an arbitrary integer.
Those new results on Golay sequences and QAM Golay complementary sequences can
be explored during synchronization and detection at the receiver end and thus
improve the performance of the communication system
Influence of device geometry on tunneling in \nu=5/2 quantum Hall liquid
Two recent experiments [I. P. Radu et al., Science 320, 899 (2008) and X. Lin
et al., Phys. Rev. B 85, 165321 (2012)] measured the temperature and voltage
dependence of the quasiparticle tunneling through a quantum point contact in
the \nu= 5/2 quantum Hall liquid. The results led to conflicting conclusions
about the nature of the quantum Hall state. In this paper, we show that the
conflict can be resolved by recognizing different geometries of the devices in
the experiments. We argue that in some of those geometries there is significant
unscreened electrostatic interaction between the segments of the quantum Hall
edge on the opposite sides of the point contact. Coulomb interaction affects
the tunneling current. We compare experimental results with theoretical
predictions for the Pfaffian, SU(2)_2, 331 and K=8 states and their
particle-hole conjugates. After Coulomb corrections are taken into account,
measurements in all geometries agree with the spin-polarized and
spin-unpolarized Halperin 331 states.Comment: Final version as accepted by PR
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