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10篇 您的检索式:作者名="ZWICK THOMAS"
    题名 作者 年代 出处 被引量
1100 GHz silicon–organic hybrid modulator显示文摘Electro-optic modulation at frequencies of 100 GHz and beyond is important for photonic-electronic signal processing at the highest speeds.To date,however,only a small number of devices exist that can operate up to this frequency.In this study,we demonstrate that this frequency range can be addressed by nanophotonic,silicon-based modulators.We exploit the ultrafast Pockels effect by using the silicon–organic hybrid(SOH)platform,which combines highly nonlinear organic molecules with silicon waveguides.Until now,the bandwidth of these devices was limited by the losses of the radiofrequency(RF)signal and the RC(resistor-capacitor)time constant of the silicon structure.The RF losses are overcome by using a device as short as 500 μm,and the RC time constant is decreased by using a highly conductive electron accumulation layer and an improved gate insulator.Using this method,we demonstrate for the first time an integrated silicon modulator with a 3dB bandwidth at an operating frequency beyond 100 GHz.Our results clearly indicate that the RC time constant is not a fundamental speed limitation of SOH devices at these frequencies.Our device has a voltage–length product of only V_(π)L=11 V mm,which compares favorably with the best silicon-photonic modulators available today.Using cladding materials with stronger nonlinearities,the voltage–length product is expected to improve by more than an order of magnitude.Luca Alloatti Robert Palmer Sebastian Diebold Kai Philipp Pahl Baoquan Chen Raluca Dinu Maryse Fournier Jean-Marc Fedeli Thomas Zwick Wolfgang Freude Christian Koos Juerg Leuthold 2014Light(Science & Applications)2014,3,1:3
2Communication and radar system simulator for optimization of multiple antenna sys- tems 显示文摘Lars Reichardt Jurgen Maurer Tbomas Fugen and Thomas Zwick 2011Proceedings of the IEEE2011,07,:1
3Employee participation and productivity显示文摘Thomas Zwick 2004Labour Economics2004,,6:1
4A rapid procedure for the isolation of C0t-1 DNA from plants显示文摘Zwick Michael S Hanson Robert E McKnight Thomas D 1997Genome1997,40,1:1
5UWB antennas for communication systems显示文摘Grzegorz Adamiuk Thomas Zwick Werner Wiesbeck 2012Proceeding of the IEEE2012,100,7:1
6Consequence of Seniority Wages on the Employment Structure显示文摘Zwick Thomas 0,,01:1
7A Genetic Algorithm for the Evaluation of Material Parmr~ters of Compound Multilayered Structures显示文摘Thomas Zwick Jens Haala Wemer Wiesbeck 2002IEEE transactions on microwave and techniques2002,50,:1
8The Impact of ICT Investment on Establishment Productivity 显示文摘ZWICK THOMAS 2003National Institute Economic Review2003,184,:1
9Predictive Tracking Implementation for Mobile Communication Using Programmable Metasurface显示文摘The programmable metasurface(PM)is an antenna array architecture that realizes flexible beam steering.This functionality is achieved by controlling the unit cells designed with micro components such as positive-intrinsic-negative(PIN)diodes,which offers potential cost reductions in the next generation wireless communication systems.Although PM has been a popular topic in antenna design,its implementations in real-time systems accompanied by signal processing algorithms are challenging.In this paper,novel predictive tracking algorithms for mobile communication scenarios using a PM are created and implemented in a real-time system operating at 28 GHz.An angular speed prediction(ASP)algorithm is proposed to compute the position of user equipment(UE)based on the previously recorded beam directions.As another solution,an angle correction(AC)algorithm is proposed to further improve the prediction and tracking accuracy.As a benchmark,the comparisons to a previous PM tracking algorithm without prediction are presented.Both simulation and measurement results show that the prediction algorithms successfully improve the tracking performance,which also prove the feasibilities of PM-based systems to solve complex real-time signal processing problems.Yueheng Li Sven Bettinga Lucas Giroto de Oliveira Mohamad Basim Alabd Joerg Eisenbeis Xiang Wan Xueyun Long Tiejun Cui Thomas Zwick 2023China Communications2023,20,8:0
10Joint Modulations of Electromagnetic Waves and Digital Signals on a Single Metasurface Platform to Reach Programmable Wireless Communications显示文摘In current wireless communication and electronic systems,digital signals and electromagnetic(EM)radiation are processed by different modules.Here,we propose a mechanism to fuse the modulation of digital signals and the manipulation of EM radiation on a single programmable metasurface(PM).The PM consists of massive subwavelength-scale digital coding elements.A set of digital states of all elements forms simultaneous digital information roles for modulation and the wave-control sequence code of the PM.By designing digital coding sequences in the spatial and temporal domains,the digital information and farfield patterns of the PM can be programmed simultaneously and instantly in desired ways.For the experimental demonstration of the mechanism,we present a programmable wireless communication system.The same system can realize transmissions of digital information in single-channel modes with beamsteerable capability and multichannel modes with multiple independent information.The measured results show the excellent performance of the programmable system.This work provides excellent prospects for applications in fifth-or sixth-generation wireless communications and modern intelligent platforms for unmanned aircrafts and vehicles.Xiang Wan Chaokun Xiao He Huang Qiang Xiao Wei Xu Yueheng Li Joerg Eisenbeis Jiawei Wang Ziai Huang Qiang Cheng Shi Jin Thomas Zwick Tiejun Cui 2022Engineering2022,8,1:0
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