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1.
计量是国家质量基础的重要组成部分,产品质量的提升离不开科学、精准的计量。工业发达国家极为重视计量测试技术的发展。通过搜集、整理量子效应计量、芯片级计量等国内外大量文献资料,归纳分析了近年来国外先进计量测试技术发展动态与趋势。以量子技术和基本物理常数为基础建立量子计量基标准,将大幅提高测量准确度和稳定性,结合量子效应的微加工技术实现芯片尺度的测量等,微纳尺度计量技术也在科学研究、精密测量、智能制造等领域得到广泛应用。本文可为我国计量技术发展提供借鉴。  相似文献   
2.
研究基于闪耀光栅的Littrow外腔量子级联激光器,设计一种改进型Littrow外腔腔型,实现了小型化样机研制。测试结果表明,输出激光波长调谐范围1317cm–1(7.593μm)至983cm–1(10.173μm),最大平均功率17.7m W,激光线宽小于1cm–1,功率稳定性优于0.5%(4h),波长稳定性优于0.12cm–1(5.4h)。样机激光头尺寸76mm×54mm×50mm,部分技术指标优于国外商业产品。  相似文献   
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We investigate the application of the hybrid semiconductor pixel detector Timepix for precise characterization, quantum sensitivity dosimetry and visualization of the charged particle radiation and X-ray field inside commercial aircraft at operational flight altitudes. The quantum counting capability and granularity of Timepix provides the composition and spectral-characteristics of the X-ray and charged-particle field with high sensitivity, wide dynamic range, high spatial resolution and particle type resolving power. For energetic charged particles the direction of trajectory and linear energy transfer can be measured. The detector is operated by the integrated readout interface FITPix for power, control and data acquisition together with the software package Pixelman for online visualization and real-time data processing. The compact and portable radiation camera can be deployed remotely being controlled simply by a laptop computer. The device performs continuous monitoring and accurate time-dependent measurements in wide dynamic range of particle fluxes, deposited energy, absorbed dose and equivalent dose rates. Results are presented for in-flight measurements at altitudes up to 12 km in various flights selected in the period 2006–2013.  相似文献   
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基于量子定位导航系统原理,设计并分析了基于3颗卫星的星基量子定位导航系统的测距与定位过程,包括星地光链路的建立、量子纠缠光的发射与接收、到达时间差的获取、量子定位导航系统的测距,以及用户坐标的计算与导航,并对量子定位导航系统中的每个过程的实现进行了详细的阐述。  相似文献   
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This paper develops a Quantum-inspired Genetic Algorithm (QGA) to find the sets of optimal parameters for the wind disturbance alleviation Flight Control System (FCS). To search the problem domain more evenly and uniformly, the lattice rule based stratification method is used to create new chromosomes. The chromosomes are coded and updated according to quantum-inspired strategies. A niching method is used to ensure every chromosome can converge to its corresponding local minimum in the optimization process. A parallel archive system is adopted to monitor the chromosomes on-line and save all potential feasible solutions in the optimization process. An adaptive search strategy is used to gradually adjust the search domain of each niche to finally approach the local minima. The solutions found by the QGA are compared with some other Multimodal Optimization (MO) algorithms and are tested on the FCS of the Boeing 747 to demonstrate the effectiveness of the proposed algorithm.  相似文献   
7.
黄红梅  许录平  王勇  张华 《宇航学报》2012,33(7):891-895
量子定位系统(QPS)是一种高精度安全的定位技术。阐述了量子定位原理,重点分析了QPS信号在大气空间中的传输特性,得出不同波长在不同通信距离下信号的衰减,计算了一定波长不同能见度下实现QPS定位的通信距离。根据研究,可选择合适的波长以减小大气的吸收、散射及湍流对信号的影响,设计合适的卫星高度和基线长度提高其定位精度。所做的研究可为实际设计QPS定位系统提供理论参考依据。  相似文献   
8.
量子通信是一种无条件安全的信息传输方式. 提出了一种基于量子纠缠的空间信息系统. 该系统以平流层平台和地球同步卫星为量子中继站, 分发纠缠光子对. 利用量子纠缠在发信者与收信者之间建立通信链路, 使用量子隐形传态进行量子信息传输. 讨论了该空间信息系统的特性, 并对其信息传输性能进行了数值分析. 结果表明该系统能够安全有效地传输空间信息.   相似文献   
9.
针对现有导航技术的不足,特别是天基卫星导航技术(如GPS)易受到干扰和破坏,美英两国相续进行了量子定位系统技术的研究。分析了量子定位系统产生的背景,阐述了量子定位系统的概念,对量子定位系统进行了分类,分析了其特点,重点梳理了量子定位系统的发展轨迹,继而分析了量子定位系统对导弹武器发展的影响,最后给出总结。  相似文献   
10.
The dynamics of linear and nonlinear electrostatic shock excitations is studied in homogeneous, unmagnetized, unbounded and dissipative quantum plasma consisting of electrons and ions. The dissipation in the system is taken into account by incorporating the ion kinematic viscosity. The system is modelled using the quantum hydrodynamic equations in which the electrons are significantly affected by the quantum forces, viz., the quantum statistical pressure, the quantum Bohm potential and electron exchange-correlations due to electron spin. In the weakly nonlinear limit, using reductive perturbation method deformed Korteweg-de Vries Burgers’s (KdVB) equation, which elegantly combines the effects of nonlinearity, dispersion and dissipation is derived. It is found that the present model predicts the existence of both nonlinear oscillatory and monotonic shock structures. The temporal evolution, stability and phase-space dynamics of nonlinear ion acoustic shocks are investigated numerically to elucidate the effects of quantum diffraction, electron exchange correlation and ion kinematic viscosity.  相似文献   
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