24,090 research outputs found
Probing the primordial Universe with MeerKAT and DES
It is usually assumed that we will need to wait until next-generation surveys
like Euclid, LSST and SKA, in order to improve on the current best constraints
on primordial non-Gaussianity from the Planck experiment. We show that two
contemporary surveys, with the SKA precursor MeerKAT and the Dark Energy Survey
(DES), can be combined using the multi-tracer technique to deliver an accuracy
on measurement of that is up to three times better than Planck.Comment: 7 pages, 5 figures, 1 table. We now marginalise over the bias, and
ensure that we exclude nonlinear scales, leading to small quantitative
corrections. Version accepted by MNRA
Energetics of ion competition in the DEKA selectivity filter of neuronal sodium channels
The energetics of ionic selectivity in the neuronal sodium channels is
studied. A simple model constructed for the selectivity filter of the channel
is used. The selectivity filter of this channel type contains aspartate (D),
glutamate (E), lysine (K), and alanine (A) residues (the DEKA locus). We use
Grand Canonical Monte Carlo simulations to compute equilibrium binding
selectivity in the selectivity filter and to obtain various terms of the excess
chemical potential from a particle insertion procedure based on Widom's method.
We show that K ions in competition with Na are efficiently excluded
from the selectivity filter due to entropic hard sphere exclusion. The
dielectric constant of protein has no effect on this selectivity. Ca
ions, on the other hand, are excluded from the filter due to a free energetic
penalty which is enhanced by the low dielectric constant of protein.Comment: 14 pages, 7 figure
Droplet mixer based on siphon-induced flow discretization and phase shifting
We present a novel mixing principle for centrifugal microfluidic platforms. Siphon structures are designed to disrupt continuous flows in a controlled manner into a sequence of discrete droplets, displaying individual volumes as low as 60 nL. When discrete volumes of different liquids are alternately issued into a common reservoir, a striation pattern of alternating liquid layers is obtained. In this manner diffusion distances are drastically decreased and a fast and homogeneous mixing is achieved. Efficient mixing is demonstrated for a range of liquid combinations of varying fluid properties such as aqueous inks or saline solutions and human plasma. Volumes of 5 muL have been mixed in less than 20 s to a high mixing quality. One-step dilutions of plasma in a standard phosphate buffer solution up to 1:5 are also demonstrated
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