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The Laser-Induced Forward Transfer (LIFT) process consists of the irradiation, using a pulsed laser, of a thin film (the donor) deposited onto a transparent substrate to induce the ejection of a small part of the irradiated volume and its deposition on a receiver substrate set in close proximity. This simple technology has been widely investigated to print, with high spatial resolution, a wide range...
Computational electromagnetics modeling is presented for the design of multilayered nanoparticles for maximized forward light scattering. The design computation makes use of a recursive solution algorithm for multiscattering of light waves by multilayered core-shell nanoparticle aggregates. The algorithm is based on the analytical solution of Maxwell equations using the multipole-expansion method...
In this paper we report the novel assembly method of a biosensor unit based on 64 pixel photodetector array with a proprietary semiconductor quantum dots (QDs) quantum well (QW) hybrid structure. There is significantly lower dark current for optimized high sensitivity detector. The capacitive trans-impedance amplifier (CTIA)-correlated double sampling (CDS) readout circuit can readout weak optical...
Using Crosslight APSYS, we have made two-dimensional simulation of triple junction solar cells based on the CdZnTe/CdTe/Si material system with tunnel junctions. The basic physical quantities like band diagram, optical absorption and generation for the modeled TJ cell, and external quantum efficiency for individual sub cell junctions are obtained. Current matching analyses and multi-sun concentration...
A new high voltage buried P+ layer membrane SOI (BP+M SOI) is proposed. Its Breakdown voltage (BV) is only decided by lateral breakdown voltage like Camsemi SOI. Introducing of P+ layer can effectively reduce specific on-resistance and alleviate self-heating effect (SHE). The electric characterizations are researched for the new structure by using 2D MEDICI software. The simulation results show that...
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