According to a report from Business Wire, the global smart wearable market is projected to showcase 776 million devices by 2026. These devices serve various purposes, including aiding patients with critical health con...
An NRZ receiver incorporates new architecture and circuit techniques to achieve a low power and area consumption. Realized in 28-nm CMOS technology, the full-rate RX operates at 56 Gb/s with a bit error rate less than...
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This paper evaluates four three-level (3-L) inverter topologies for achieving the medium voltage DC transformer (DCX) for contactless power transfer (CPT) applications. The analysis and simulation results evaluate sev...
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The growing privacy concerns and the communication costs associated with transmitting raw data have resulted in techniques like federated learning, where the machine learning models are trained at the edge nodes, and ...
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In this work, we present a novel solution aimed at improving robotic manipulators' performance in contact tasks. Inspired by the human motor control system, which relies on a feedforward mechanism to anticipate an...
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Lung cancer is characterized by high mortality and incidence rates, making it one of the most prevalent cancers globally. Early detection significantly improves the chances of survival for individuals affected by this...
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—The uncertainty in microgrid systems introduces significant difficulties in their operation, such as increasing the operational costs when using conventional optimization algorithms. In this study, a Deep Neural Net...
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作者:
Chen, LiangDong, MingBagci, Hakan
Electrical and Computer Engineering Program Computer Electrical and Mathematical Science and Engineering Division Thuwal23955-6900 Saudi Arabia
Output saturation observed for high power levels of input optical pump is a well-known bottleneck in the operation of terahertz photoconductive devices (PCDs). This saturation is a result of various screening effects ...
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The integration of inverter-based distributed generation (IBDG) challenges conventional protection systems due to their low fault current contributions. This paper investigates the impact of inverter controllers and m...
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Magnetic Weyl semimetals are promising materials for spintronic applications due to their unique properties in bulk and surface topological states and the rich interplay between band topology and magnetism. While vari...
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Magnetic Weyl semimetals are promising materials for spintronic applications due to their unique properties in bulk and surface topological states and the rich interplay between band topology and magnetism. While various nontraditional magneto-electrical effects have been studied in magnetic Weyl semimetals, transport properties related to spin-polarized tunneling from these materials remain less explored. In this work, we developed fully epitaxial magnetic tunnel junctions (MTJs) based on a ferromagnetic Weyl semimetal Co2MnGa. By growing Co2MnGa films under different conditions, we fabricated a series of MTJs possessing different degrees of order in the semimetal electrodes and compared their tunneling magnetoresistance (TMR). We find that the TMR becomes enhanced with the improvement of the chemical ordering of Co2MnGa. Our results reveal the relationship between the spin tunneling in MTJs and the chemical order of the Co2MnGa electrode and provide insights on further enhancing TMR via semimetal engineering.
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