11,140 research outputs found
Visibility of ultra-cold Bose system in triangular optical lattices
In this paper, by treating the hopping parameter in Bose-Hubbard model as a
perturbation, with the help of the re-summed Green's function method and
cumulants expansion, the momentum distribution function of the ultra-cold Bose
system in triangular optical lattice is calculated analytically. By utilizing
it, the time-of-flight absorption picture is plotted and the corresponding
visibility is determined. The comparison between our analytical results and the
experimental data from Ref.[4] exhibits a qualitative agreement.Comment: 3 figure
A spectral line survey of IRC +10216 between 13.3 and 18.5 GHz
A spectral line survey of IRC +10216 between 13.3 and 18.5 GHz is carried out
using the Shanghai Tian Ma 65 m Radio Telescope (TMRT-65m) with a sensitivity
of < 7 mK. Thirty-five spectral lines of 12 different molecules and radicals
are detected in total. Except for SiS, the detected molecules are all
carbon-chain molecules, including HC3N, HC5N, HC7N, HC9N, C6H, C6H-, C8H, SiC2,
SiC4, c-C3H2 and l-C5H. The presence of rich carbon-bearing molecules is
consistent with the identity of IRC +10216 as a carbon-rich AGB star. The
excitation temperatures and column densities of the observed species are
derived by assuming a local thermodynamic equilibrium and homogeneous
conditions.Comment: This is the authors' version of the manuscript; 16 pages, 5 figures,
6 tables; Accepted for publication in A&A 8/17/201
Perfect valley filter based on topological phase in disordered Monolayer Heterostructure
The hydrogenated monolayer epitaxially grown on a
substrate is a novel type of two-dimensional material hosting quantum
spin-quantum anomalous Hall (QS-QAH) states. For a device formed by
monolayer ribbon, the QAH edge states, belong to a single valley, are located
at opposite edges of the ribbon. The QSH edge states, on the other hand, belong
to the other valley and are distributed in a very narrow region at the same
edge. In this paper, we find such material can be used to fabricate perfect
valley filter. Adopting scattering matrix method and Green's function method,
the valley resolved transport and spatial distribution of local current are
calculated, in the present of Anderson disorder, edge defects and edge
deformations. The numerical results demonstrate that, in the presence of above
three types of disorder with moderate strength, the carriers can flow
disspationless with nearly perfect valley polarization. Moreover, when the
device becomes longer, the transport current does not decrease while the valley
filter works even better. The origin is that the disorder can destroy the QSH
edge states, but the valley-polarized QAH edge states can well hold.Comment: 5 figure
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