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LEOFETs with three polymer based designs.

Authors: Anil Kumar Dr Bheemaiah;

LEOFETs with three polymer based designs.

Abstract

The symmetric state transfer-resistance transfer-semantic transfer in a uniform design of state based circuit theory, as a generalization of thin client based computing is inspired by design thinking paradigms like the C+ language, (“Website” n.d.)primarily developed towards ending memory buffer overflow attacks, and in the creation of scalable quantum scale computing. Spin Torque Transfer adds spin wave functionality to adiabatic control theory implementations in circuit theory for reconfigurability. An atomic unit of this paradigm is in waveguide coupled LE-OFETS, the possible future of flexible circuits and a contender for minimalist designs for the quantum e-paper project. In this paper we use MaC to model mathematically one such atomic design of a LE-OFET. Keywords: LE-OFET, state transfer, resistance transfer, spin torque transfer, semantic transfer, e-paper, quantum e-paper, flexible circuits, What: Design of LE-OFETs for fast switching and infinite input impedance FET designs, for high density integration and quantum scale computing, extendable to single photon computing applications. In this paper we design waveguide coupled integrated OLED and OFET devices coupled as a single device with a single LDR inspired photosensitive polymer and a single light emitting polymer with a waveguide coupling the emission and absorption medium with LiFi spectrum operations. How: Why: Flexible circuitry is an inherent part of the next paradigm in custom additive manufacturing of electronics and photonic hardware. In the light of the One Quantum Tablet Per Child, is the need for manufacturing flexible quantum e-paper. Quantum coprocessors add to MCU based computing which provides a high speedup on the edge, the quantum edge for quantum cloud functions, adding an edge for classical cloud functions and a possible hardware random generator for true random numbers, the realistic Z-cloud. This integration of the Q Experience with the normal cloud and the stochastic cloud with edge support leads to easily manufactured e-paper solutions which like Amazon Echo or Google Cloud, are based on true SaaS, with a natural UI through normal written script and even extensible to a role as a graphic tablet. So What: Inexpensive e-paper Story: When I was in my undergraduate at IIT Madras, I was ridiculed by a well meaning mentor of mine for “crazy thinking”, ideation and innovation on high speed switched optocoupler based transistors, today such technology is extremely useful in HPC and flex-circuit organic design relevant in 3DP, additive custom manufacturing and rapid prototyping. Applications: TOF, LIDAR, LiFi, e-paper, Q-Qi

Keywords

state transfer, spin torque transfer, resistance transfer, LE-OFET, epaper, semantic transfer

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This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
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