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Experimental results indicate an increased dot density of 5×1010 cm−2 with completely suppressed coalescences in vertically aligned InAs quantum dots capped by a GaAsSb layer.
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But newspapers have offset these losses with strong national advertising, increased dot-com ad spending and development of online classified advertising programs.
With increasing dot interval, the line distortion decreases until the dotted line becomes straight.
It is because the lowest conduction state lowers with increasing dot size according to Equation 1.
In addition, we find a decrease in the exciton biexciton separation with increasing dot size.
A similar behavior of increasing dot density with increasing coverage can be found in many other reports [9, 15, 16].
At the same time, the charging current is found to be initially rapidly increased, then saturated and lastly, slowly decreased with the increasing dot size.
Based on quantitative analysis, the cell spread area of macrophages increased significantly between 21.6% and 37.9% with increasing dot sizes of 10- to 50-nm, respectively.
One can find that the stored charge in the NC Ge layer initially rapidly increases, then saturates, and lastly, very slowly decreases with increasing dot size at any given charging time.
On the other hand, the capacitance of NC Ge layer decreases with increasing dot size according to Equation 8 and leads to a larger voltage drop across the NC Ge layer.
They have also been found to obey the tendency of initial increase, then saturation, and lastly, decrease with increasing dot size at any given charging time, which is caused by a compromise between the effects of the lowest conduction states and the capacitance of NC Ge layer on the tunneling.
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