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51.
P. Dupriez A. Piper A. Malinowski J.K. Sahu M. Ibsen B.C. Thomsen Y. Jeong L.M.B. Hickey M.N. Zervas J. Nilsson D.J. Richardson 《Photonics Technology Letters, IEEE》2006,18(9):1013-1015
We demonstrate a pulsed ytterbium-doped fiber master-oscillator power amplifier source at 1060 nm producing over 300 W of average power in 20-ps pulses at 1-GHz repetition rate. The pulses generated by a gain-switched diode were compressed by a chirped fiber Bragg grating and amplified without any distortion with excellent spectral quality. This fiber master oscillator power amplifier system offers versatility and potential for further power scaling. 相似文献
52.
Véronique B. Schwartz Franck Thétiot Sandra Ritz Sabine Pütz Lars Choritz Alexandros Lappas Renate Förch Katharina Landfester Ulrich Jonas 《Advanced functional materials》2012,22(11):2376-2386
Despite multiple research approaches to prevent bacterial colonization on surfaces, device‐associated infections are currently responsible for about 50% of nosocomial infections in Europe and significantly increase health care costs, which demands development of advanced antibacterial surface coatings. Here, novel antimicrobial composite materials incorporating zinc oxide nanoparticles (ZnO NP) into biocompatible poly(N‐isopropylacrylamide) (PNIPAAm) hydrogel layers are prepared by mixing the PNIPAAm prepolymer with ZnO NP, followed by spin‐coating and photocrosslinking. Scanning electron microscopy (SEM) characterization of the composite film morphology reveals a homogeneous distribution of the ZnO NP throughout the film for every applied NP/polymer ratio. The optical properties of the embedded NP are not affected by the matrix as confirmed by UV‐vis spectroscopy. The nanocomposite films exhibit bactericidal behavior towards Escherichia coli (E. coli) for a ZnO concentration as low as ≈0.74 μg cm?2 (1.33 mmol cm?3), which is determined by inductively coupled plasma optical emission spectrometry. In contrast, the coatings are found to be non‐cytotoxic towards a mammalian cell line (NIH/3T3) at bactericidal loadings of ZnO over an extended period of seven days. The differential toxicity of the ZnO/hydrogel nanocomposite thin films between bacterial and cellular species qualifies them as promising candidates for novel biomedical device coatings. 相似文献
53.
Dominik Schürmann Georg von Zengen Marvin Priedigkeit Sebastian Willenborg Lars Wolf 《电信纪事》2018,73(9-10):589-600
In Delay/Disruption-Tolerant Networks, man-in-the-middle attacks are easy: due to the store-carry-forward principle, an attacker can simply place itself on the route between source and destination to eavesdrop or alter bundles. This weakness is aggravated in networks, where devices are energy-constrained but the attacker is not. To protect against these attacks, we design and implement μDTNSec, a security layer for Delay/Disruption-Tolerant Networks on microcontrollers. Our design establishes a public key infrastructure with lightweight certificates as an extension to the Bundle Protocol. It has been fully implemented as an addition to μDTN on Contiki OS and uses elliptic curve cryptography and hardware-backed symmetric encryption. In this enhanced version of μDTNSec, public key identity bindings are validated by exchanging certificates using neighbor discovery. μDTNSec provides a signature mode for authenticity and a sign-then-encrypt mode for added confidentiality. Our performance evaluation shows that the choice of the curve dominates the influence of the payload size. We also provide energy measurements for all operations to show the feasibility of our security layer on energy-constrained devices. Because a high quality source of randomness is required, we evaluated the random number generators by the AT86RF231 radio, its successor AT86RF233, and one based on the noise of the A/D converter. We found that only AT86RF233 provides the required quality. 相似文献
54.
Yonggui Wang Lars‐Oliver Heim Yeping Xu Gerd Buntkowsky Kai Zhang 《Advanced functional materials》2015,25(9):1434-1441
The use of bio‐based nanoscaled cellulose for the construction of novel functional materials has progressed rapidly over the past years. In comparison to most of studies starting with the hydrophilic nanoscaled cellulose, surface‐stearoylated cellulose nanoparticles (SS‐CNPs) are used in this report for the construction of multifunctional, responsive films. SS‐CNPs with an average size of 115 ± 0.5 nm are obtained after the surface‐modification of cellulose under heterogeneous conditions. Crystalline cellulose core is present within SS‐CNPs according to solid‐state 13C nuclear magnetic resonance (NMR) spectroscopy. SS‐CNPs show excellent dispersibility in nonpolar solvents and form temperature‐responsive organogels in tetrahydrofuran (THF) at low temperature or after long time storage at room temperature. Moreover, transparent and self‐standing films of SS‐CNPs from their THF‐suspension show solvent‐responsive surface wettability and responsive shape‐memory property. SS‐CNPs can also be used for the fabrication of nanocomposite films together with nonpolar compounds, such as (2‐stearoylaminoethyl) rhodamine B. Thus, these novel SS‐CNPs derived from sustainable cellulose fibers are promising candidates for the construction of novel functional materials. 相似文献
55.
Tissue Adhesives: Linear Dendritic Block Copolymers as Promising Biomaterials for the Manufacturing of Soft Tissue Adhesive Patches Using Visible Light Initiated Thiol–Ene Coupling Chemistry (Adv. Funct. Mater. 42/2015) 下载免费PDF全文
56.
Recent years have seen dramatic increases of the use of multimedia applications on the Internet, which typically either lack congestion control or use proprietary congestion control mechanisms. This can easily cause congestion collapse or compatibility problems. Datagram Congestion Control Protocol (Dccp) fills the gap betweenUdp andTcp, featuring congestion control rather than reliability for packet-switched rich content delivery with high degree of flexibility. We present aDccp model designed and implemented withOpnet Modeler, and the experiments and evaluation focused on largely the smoothness of the data rates, and the fairness between concurrentDccp flows andTcp flows. We foundDccp-ccid3 demonstrates stable data rates under different scenarios, and the fairness betweenDccp andTcp is only achieved under certain conditions. We also validated that the throughput ofDccp-Ccid3 is proportional to the average packet size, and relatively fixed packet size is critical for the optimal operation ofDccp. Problems in the slow start phase and insufficient receiver buffer size were identified and we hereby proposed solutions on this. 相似文献
57.
This paper presents the calculation of satellite visibility and system availability based on digital elevation maps. New models for satellite visibility are derived for both non‐geostationary orbiting satellite constellations and geostationary satellites. Regression models for satellite visibility and average number of visible satellites based on easily available surface roughness variables are developed and tested. Cumulative distributions for the percentage of time that Iridium satellites are visible, taking terrain obstacles into account, are calculated and the relation between satellite visibility and system availability is discussed. Copyright © 2000 John Wiley & Sons, Ltd. 相似文献
58.
Dejan Radjen Martin Anderson Lars Sundström Pietro Andreani 《Analog Integrated Circuits and Signal Processing》2014,80(3):387-397
We present a 2nd-order 4-bit continuous-time (CT) delta-sigma modulator (DSM) employing a 2nd-order loop filter with a single operational amplifier. This choice strongly reduces the power consumption, since operational amplifiers are the most power hungry blocks in the DSM. The DSM has been implemented in a 65 nm CMOS process, where it occupies an area of \(0.08\,\hbox {mm}^2\) . It achieves an SNDR of 64 dB over a 500 kHz signal bandwidth with an oversampling ratio of 16. The power consumption is \(76\,\upmu \hbox {W}\) from a 800 mV power supply. The DSM figure-of-merit is 59 fJ/conversion. The CT DSM is well suited for the receiver of an ultra-low-power radio. 相似文献
59.
Oskar Rexfelt Lars Almefelt Daniel Zackrisson Teres Hallman Johan Malmqvist MariAnne Karlsson 《Research in Engineering Design》2011,22(3):153-171
This paper outlines the results of a project aiming to develop and apply methods for service co-creation with customers, focusing
on the early phases of service development. The project is collaboration between a manufacturing firm in the automotive industry,
one of their B2B-customers (a transportation firm), as well as a university, all in Sweden. The research team selected and
developed methods and work practices for problem analysis, idea generation, development and evaluation of services. Thus doing,
methodological influence was taken from the area of engineering design. The proposed approaches were applied in a service
development experiment mainly based on workshops. The experiment was followed up by an analysis of the resulting output, an
interview series, and an evaluation by peers in focus groups. The goal of this article is to answer the following research
questions: (1) What is the industrial applicability of co-creating services using a structured approach, e.g. what are the
benefits and challenges? (2) What do the different actors contribute with using this approach, and what possible factors influence
the nature and quality of the actors’ contributions? (3) Based on the answers to the questions above, what aspects should
be considered to support situated planning and execution of future service co-creation projects? A central conclusion is that
a structured approach is industrially applicable, but it is also evident that there is no completely universal recipe for
service innovation. Addressing these insights, the paper also contributes with guidelines to support the situation-adapted
set-up of future service co-creation projects. 相似文献
60.
李勉 李友兵 罗侃 LU Jun EKLUND Per PERSSON Per ROSEN Johanna HULTMAN Lars 都时禹 黄政仁 黄庆 《无机材料学报》2019,34(1):60-64
MAX相材料是一类兼具金属和陶瓷特性的三元层状材料, 在高温导电、耐磨、耐腐蚀和耐辐照损伤等方面性能优异。目前已经合成出的MAX相材料已有70余种, 但A位元素一直局限在ⅢA和ⅣA主族元素, 如Al、Si、Ga等, 而以副族元素占据A位的MAX相鲜有报道。本研究以Ti3AlC2为前驱体, 利用熔盐中的A位置换反应, 制备出了A位为Zn元素的全新MAX相材料Ti3ZnC2。结合X射线衍射、扫描电子显微镜和透射电子显微镜等分析手段对Ti3ZnC2的成分和结构进行了确认, 并通过密度泛函理论对Ti3ZnC2的结构稳定性和晶格参数进行了确定。进一步通过热力学计算对Fe、Co、Ni、Cu等几种元素的A位置换反应进行了预测, 发现采用这几种元素的氧化物进行置换反应在热力学上也都具有可行性。本研究所提出的元素置换策略是在保持MAX相六方层状晶体结构的基础上, 利用Al、Zn在高温下形成共晶产物实现Zn原子向A层内的迁移, 而熔盐介质的存在促进了反应动力学。本方法巧妙地避免了MAX相传统合成过程中竞争相的形成, 如M-A合金相, 因此可以用于探索更多未知的MAX相材料。 相似文献