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用晶体斜劈方法测量石英波片相位延迟的温度特性 被引量:9
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作者 许灿华 徐启峰 谢楠 《光学学报》 EI CAS CSCD 北大核心 2014年第2期127-131,共5页
介绍了一种基于晶体斜劈的偏振光相位延迟量的精密测量方法,并将该方法用于测量零级和多级石英波片相位延迟量的温度特性。该测量方法不受光源功率波动的影响,相位测量精度可以达到0.05°。相比于传统的测量方法,晶体斜劈方法在相... 介绍了一种基于晶体斜劈的偏振光相位延迟量的精密测量方法,并将该方法用于测量零级和多级石英波片相位延迟量的温度特性。该测量方法不受光源功率波动的影响,相位测量精度可以达到0.05°。相比于传统的测量方法,晶体斜劈方法在相位测量过程中无需调节光学元件,可以实时地测量相位变化,而且该方法可用于任意光学元件引入相位延迟的精确测量,或推广到不同的光学波段。 展开更多
关键词 物理光学 相位延迟量 单发测量 晶体斜劈
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The Influence of Quantum Technology on the Development of Metrology and Measuring Science 被引量:1
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作者 ZHANG Tieli MIAO Yinxiao 《Aerospace China》 2016年第3期28-35,共8页
In the new century, quantum technology has developed rapidly and has been applied in many fields. As an important aspect of the aerospace science, metrology and measuring science is a field which is influenced by the ... In the new century, quantum technology has developed rapidly and has been applied in many fields. As an important aspect of the aerospace science, metrology and measuring science is a field which is influenced by the quantum technology dramatically. The new generation of the International System of Units will be redefined on the basis of the quantum theory. More and more new sensing techniques are developed taking into account quantum principles. In this paper, the influence of quantum technology on metrology and measuring science is introduced. 展开更多
关键词 Quantum technology Metrology Sensor
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Development of a Stabilized Pan/Tilt Platform and the State of the Art
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作者 Mehmet Burcak Ozkok Ali Osman Boyacl 《Journal of Mechanics Engineering and Automation》 2013年第10期618-626,共9页
In the context of this paper, a small scale, medium precision, stabilized pan/tilt platform is developed as a prototype, which is used to compare various stabilization algorithms experimentally. The overall performanc... In the context of this paper, a small scale, medium precision, stabilized pan/tilt platform is developed as a prototype, which is used to compare various stabilization algorithms experimentally. The overall performance of the system depends on rigid body dynamics, structural dynamics, servo control loops, stabilization control algorithm, sensor fusion algorithm and sensory feedback such as from the IMU (inertial measurement unit). In the case that the response bandwidth of the overall system is high enough, the same hardware can also achieve active vibration isolation. All of these design aspects are investigated in the paper via numerical models and with their experimental verification. 展开更多
关键词 Stabilized pan/tilt platform active vibration isolation stabilization control sensor fusion inertial measurement unit
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时空分辨的飞秒激光光场测量研究进展 被引量:1
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作者 李政言 门庭 +3 位作者 唐惟启 胡耀丹 唐浩程 闫明东 《中国激光》 EI CAS CSCD 北大核心 2022年第12期40-65,共26页
30多年来,飞秒激光技术取得了巨大发展,并推进着超快光学、强场物理、超分辨成像、精密测量等科学研究领域不断进步,使得人们可以通过实验观测从微米到纳米空间尺度的原子、分子等微观物质,以及这些物质在飞秒到阿秒时间尺度上的演化过... 30多年来,飞秒激光技术取得了巨大发展,并推进着超快光学、强场物理、超分辨成像、精密测量等科学研究领域不断进步,使得人们可以通过实验观测从微米到纳米空间尺度的原子、分子等微观物质,以及这些物质在飞秒到阿秒时间尺度上的演化过程。为了实现这一目的,在技术上对各类飞秒光场振幅和相位的时间和空间三维分布(纵向时间一维、横向空间二维)进行快速甚至单发测量,是十分必要的。本文简述了各类飞秒光场的时空结构测量技术,并讨论了其在泵浦-探测实验中的应用。随着基于飞秒激光的短波次级辐射源的发展,飞秒光场时空结构测量的需求和技术正不断扩展到极紫外和X射线等短波波段。 展开更多
关键词 测量 飞秒光场 时空分辨 泵浦-探测实验 单发测量
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一种新型硬X射线超高能量分辨弯晶光谱仪 被引量:1
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作者 杨志诚 李宾 《光学学报》 EI CAS CSCD 北大核心 2022年第11期225-233,共9页
基于目前世界上先进光源的硬X射线光谱仪的设计算法,采用圆柱面强弯曲布拉格晶体分光实现高能量分辨。提出了一种新型二次衍射分光光谱仪结构,可在3~25 keV光子能量范围内实现单发脉冲2×10^(5)的能量分辨率。运用理论分析和数值计... 基于目前世界上先进光源的硬X射线光谱仪的设计算法,采用圆柱面强弯曲布拉格晶体分光实现高能量分辨。提出了一种新型二次衍射分光光谱仪结构,可在3~25 keV光子能量范围内实现单发脉冲2×10^(5)的能量分辨率。运用理论分析和数值计算验证了光谱仪的能量分辨性能,并通过机械扫描得到带宽大于1%的重组光谱。该技术可以用于测量上海硬X射线自由电子激光装置(SHINE)硬X射线波段自放大自发辐射光谱中的细锐结构以及用户科学实验中的高分辨光谱的探测和应用,具有重要的研究价值和意义。 展开更多
关键词 X射线光学 光谱仪 圆柱面强弯曲晶体 硬X射线自由电子激光 单发在线测量
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Single-photon detection and its applications 被引量:8
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作者 LIANG Yan ZENG HePing 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第7期1218-1232,共15页
A single-photon detector is an extremely sensitive device capable of registering photons,offering essential technical support for optics quantum information applications.We review herein our recent experimental progre... A single-photon detector is an extremely sensitive device capable of registering photons,offering essential technical support for optics quantum information applications.We review herein our recent experimental progress in the development and application of single-photon detection techniques.Techniques based on advanced self-differencing,low-pass filtering,frequency up-conversion and photon-number-resolving are introduced for attaining high-speed,high-efficiency,low-noise single-photon detection at infrared wavelengths.The advantages of high-speed single-photon detection are discussed in some applications,such as the laser ranging and quantum key distribution.The photon-number-resolving detection is shown to support efficient quantum random number generation. 展开更多
关键词 quantum optics PHOTODETECTION avalanche photodiode frequency up-conversion
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