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These positives show dot size variations proportional to the desired print density.
The dot size directly affects the detection wavelength.
The nanocrystal or quantum dot size is therefore uniform.
Dot size indicates sample size (see Table 1).
As the current of QDs decreases with the dot size decreasing, the increase of the current with dot density will be hindered by the decrease of dot size.
Also, dependence of the wave functions and energies on the dot size was obtained.
Dot size is proportional to the frequency of large errors by DBH class.
It is because the lowest conduction state lowers with increasing dot size according to Equation 1.
This indicates the partial Ge vapor and/or sublimation, and makes dot size and resistivity decrease.
In addition, we find a decrease in the exciton biexciton separation with increasing dot size.
The dot size relationship with beam dose is shown in Fig. 2.
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