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Organic thin film transistor based devices are rapidly emerging technology trend in the area of electronics components design and becoming popular area of research in last decades. This is due to their potential of flexible electronics applications, ease of fabrication and low cost in designing of mainly various flexible electronics devices and circuits. This paper focuses towards the performance...
Organic device modeling and application of organic transistors are rapidly emerging area of research now a day. This trend is developing due to various advantages of organic material offers such as fabrication over large area and flexible-electronics at lower-cost and temperature. Considering this fact, this paper presents overview of various OTFT structures. The result-analysis is implemented through...
In this paper the impact of the source/drain (S/D) electrode on performance parameters of the organic-material based transistor is discussed using the 2-D numerical-device Atlas simulator. Additionally, the performance-parameter and the electrical-characteristics of transistor is evaluated in terms of the drive-current, mobility and current on-off-ratio. Furthermore, thickness of source/drain electrode...
Beginning from a historical introduction, we present in this article the current excitements resulting from a possible hybridization of the two important areas of Condensed Matter Physics, namely, semiconductors and magnetism. Both the subjects have contributed to economically important technologies and rich physics, independently. We discuss the physics of diluted magnetic semiconductors (DMS) with...
We present theoretical analyses of anisotropic lattice diamagnetism, magnetization due to magnetic ions and carrier spin-polarization in the diluted magnetic semiconductor, Pb1-xEuxTe. The lattice diamagnetism results from orbital susceptibility due to inter band effects and spin-orbit contributions. The spin-orbit contribution is found to be dominant. However, both the contributions show pronounced...
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