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51.
Ohmic contacts to n-type 4H- and 6H-SiC without postdeposition annealing were achieved using an interlayer of epitaxial InN beneath a layer of
Ti. The InN films were grown by reactive dc magnetron sputtering at 450°C, whereas the Ti films were deposited by electron-beam
evaporation at room temperature. The InN films were characterized by x-ray diffraction (XRD), secondary electron microscopy
(SEM), cross-sectional transmission electron microscopy (TEM), and Hall-effect measurements. Both XRD and TEM observations
revealed that the Ti and InN films have epitaxial relationships with the 6H-SiC substrate as follows: (0001)[]Ti∥(0001)[]InN∥(0001)[]6H-SiC. The Ti/InN/SiC contacts displayed ohmic behavior, whereas Ti/SiC contacts (without an InN interlayer) were nonohmic. These
results suggest that InN reduces the Schottky barrier height at the SiC surface via a small conduction-band offset and support previous reports of an electron accumulation layer at the surface of InN. 相似文献
52.
Shohani Reza Bakhtiari Mostafavi Seyedakbar Hakami Vesal 《Wireless Personal Communications》2021,120(1):379-400
Wireless Personal Communications - Software Defined Networks (SDNs) have accelerated and simplified the management, configuration and error detection in today’s networking systems. However,... 相似文献
53.
Estimation of locations of sudden changes in a steplike signal has many signal processing applications; e.g., well-log signal segmentation, ionic-channel signal classification, edge detection, and segmentation of images. In this work, the Cramer-Rao lower bound (CRLB) on locations of steps in one-dimensional (1-D) steplike signals is calculated. The calculation is based on the use of a sigmoidal function to model a sudden-change (step) in the signal. The introduced model has an adjustable parameter that can be used to fit the CRLB calculation to a particular class of steplike signals 相似文献
54.
Ma Y King AP Gogin N Gijsbers G Rinaldi CA Gill J Razavi R Rhode KS 《IEEE transactions on bio-medical engineering》2012,59(1):122-131
X-ray fluoroscopically guided cardiac electrophysiological procedures are routinely carried out for diagnosis and treatment of cardiac arrhythmias. X-ray images have poor soft tissue contrast and, for this reason, overlay of static 3-D roadmaps derived from preprocedural volumetric data can be used to add anatomical information. However, the registration between the 3-D roadmap and the 2-D X-ray image can be compromised by patient respiratory motion. Three methods were designed and evaluated to correct for respiratory motion using features in the 2-D X-ray images. The first method is based on tracking either the diaphragm or the heart border using the image intensity in a region of interest. The second method detects the tracheal bifurcation using the generalized Hough transform and a 3-D model derived from 3-D preoperative volumetric data. The third method is based on tracking the coronary sinus (CS) catheter. This method uses blob detection to find all possible catheter electrodes in the X-ray image. A cost function is applied to select one CS catheter from all catheter-like objects. All three methods were applied to X-ray images from 18 patients undergoing radiofrequency ablation for the treatment of atrial fibrillation. The 2-D target registration errors (TRE) at the pulmonary veins were calculated to validate the methods. A TRE of 1.6 mm ± 0.8 mm was achieved for the diaphragm tracking; 1.7 mm ± 0.9 mm for heart border tracking, 1.9 mm ± 1.0 mm for trachea tracking, and 1.8 mm ± 0.9 mm for CS catheter tracking. We present a comprehensive comparison between the techniques in terms of robustness, as computed by tracking errors, and accuracy, as computed by TRE using two independent approaches. 相似文献
55.
56.
Refan Mohammad Hossein Dameshghi Adel Kamarzarrin Mehrnoosh 《Wireless Personal Communications》2020,111(1):111-142
Wireless Personal Communications - The position of mobile devices is determined by Real Time Differential Global Positioning System (RTDGPS). This system is composed of fixed and mobile station.... 相似文献
57.
A Patterned 3D Silicon Anode Fabricated by Electrodeposition on a Virus‐Structured Current Collector
Xilin Chen Konstantinos Gerasopoulos Juchen Guo Adam Brown Chunsheng Wang Reza Ghodssi James N. Culver 《Advanced functional materials》2011,21(2):380-387
Electrochemical methods were developed for the deposition of nanosilicon onto a 3D virus‐structured nickel current collector. This nickel current collector is composed of self‐assembled nanowire‐like rods of genetically modified tobacco mosaic virus (TMV1cys), chemically coated in nickel to create a complex high surface area conductive substrate. The electrochemically deposited 3D silicon anodes demonstrate outstanding rate performance, cycling stability, and rate capability. Electrodeposition thus provides a unique means of fabricating silicon anode materials on complex substrates at low cost. 相似文献
58.
Mohammad?Hossein?Moaiyeri Reza?Chavoshisani Ali?Jalali Keivan?NaviEmail author Omid?Hashemipour 《Circuits, Systems, and Signal Processing》2012,31(2):465-488
In this paper a low-power, high-speed and high-resolution voltage-mode Min-Max circuit, as well as a new efficient universal
structure for determining the minimum and maximum values of the input digital signals, is proposed for nanotechnology. In
addition, the proposed designs provide rail-to-rail input and output signals which enhance the performance and the robustness
of the circuits. The advantage of the proposed Min-Max circuit is that it is extendable for any arbitrary n-digit and radix-r input numbers. Comprehensive simulation results at CMOS and CNFET technologies demonstrate the low-power and high-performance
operation as well as insusceptibility to PVT variations of the proposed structure. 相似文献
59.
Many applications, such as e-passport, e-health, credit cards, and personal devices that utilize Radio frequency Identification (RFID) devices for authentication require strict security and privacy. However, RFID tags suffer from some inherent weaknesses due to restricted hardware capabilities and are vulnerable to eavesdropping, interception, or modification. The synchronization and untraceability characteristics are the major determinants of RFID authentication protocols. They are strongly related to privacy of tags and availability, respectively. In this paper, we analyze a new lightweight RFID authentication protocol, Song and Mitchell, in terms of privacy and security. We prove that not only is the scheme vulnerable to desynchronization attack, but it suffers from traceability and backward traceability as well. Finally, our improved scheme is proposed which can prevent aforementioned attacks. 相似文献
60.
Mortazavi Seyed Hassan Akbar Reza Safaei Farshad Rezaei Amin 《Wireless Networks》2019,25(6):3675-3687
Wireless Networks - The combination of traditional wired links for regular transmissions and express wireless paths for long distance communications is a promising solution to prevent multi-hop... 相似文献