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Therefore, ambipolar device operation over a wide range of operating voltages is difficult to realize.
(a) Device operation concept and parameters.
The principles of the nanophotonic device operation are also described.
Device operation and compact modeling in support of circuit simulations needed for design.
At the beginning of device operation, DNA molecules are in free solution (Figure 1a).
A flow chart of the device operation is shown in Figure S1.
The large band gap of MoS2 implies the possibility of device operation at higher voltages or electric fields.
At temperatures around 70 K, correlation lengths are on the order of 10 nm, presenting a limitation for device operation.
Multi-physics numerical simulations on low-barrier, high current SGTs provide insight into device operation and design strategies for optimization.
The monolithic integration reduces the sensitivity to external interference and enables autonomous device operation.
It is shown that the carrier lifetime value has an important impact on the device operation.
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