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Single-sideband modulation for dynamically reconfigurable multiwavelength interferometry
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作者 Leonard Voßgrag Annelie Schiller +4 位作者 Tobias Seyler Markus Fratz Alexander Bertz Daniel Carl Ingo Breunig 《Advanced Photonics Nexus》 2025年第4期119-127,共9页
Single-wavelength interferometry achieves high resolution for smooth surfaces but struggles with rough industrially relevant ones due to limited unambiguous measuring range and speckle effects.Multiwavelength interfer... Single-wavelength interferometry achieves high resolution for smooth surfaces but struggles with rough industrially relevant ones due to limited unambiguous measuring range and speckle effects.Multiwavelength interferometry addresses these challenges using synthetic wavelengths,enabling a balance between extended measurement range and resolution by combining several synthetic wavelengths.This approach holds immense potential for diverse industrial applications,yet it remains largely untapped due to the lack of suitable light sources.Existing solutions are constrained by limited flexibility in synthetic-wavelength generation and slow switching speeds.We demonstrate a light source for multiwavelength interferometry based on electro-optic single-sideband modulation.It reliably generates synthetic wavelengths with arbitrary values from centimeters to meters and switching time below 30 ms.This breakthrough paves the way for dynamic reconfigurable multiwavelength interferometry capable of adapting to complex surfaces and operating efficiently even outside laboratory settings.These capabilities unlock the full potential of multiwavelength interferometry,offering unprecedented flexibility and speed for industrial and technological applications. 展开更多
关键词 digital holography electro-optic modulation interferometry
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Remote picometric acoustic sensing via ultrastable laser homodyne interferometry
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作者 Yoon-Soo Jang Dong Il Lee +2 位作者 Jaime Flor Flores Wenting Wang Chee Wei Wong 《Advanced Photonics Nexus》 2025年第4期54-62,共9页
Acoustic detection has many applications across science and technology from medicine to imaging and communications.However,most acoustic sensors have a common limitation in that the detection must be near the acoustic... Acoustic detection has many applications across science and technology from medicine to imaging and communications.However,most acoustic sensors have a common limitation in that the detection must be near the acoustic source.Alternatively,laser interferometry with picometer-scale motional displacement detection can rapidly and precisely measure sound-induced minute vibrations on remote surfaces.Here,we demonstrate the feasibility of sound detection up to 100 kHz at remote sites with≈60 m optical path length via laser homodyne interferometry.Based on our ultrastable hertz linewidth laser with 10-15 fractional stability,our laser interferometer achieves 0.5 pm/Hz1/2 displacement sensitivity near 10 kHz,bounded only by laser frequency noise over 10 kHz.Between 140 Hz and 15 kHz,we achieve a homodyne acoustic sensing sensitivity of subnanometer/Pascal across our conversational frequency overtones.The minimal sound pressure detectable over 60 m optical path length is≈2 mPa,with dynamic ranges over 100 dB.With the demonstrated standoff picometric distance metrology,we successfully detected and reconstructed musical scores of normal conversational volumes with high fidelity.The acoustic detection via this precision laser interferometer could be applied to selective area sound sensing for remote acoustic metrology,optomechanical vibrational motion sensing,and ultrasensitive optical microphones at the laser frequency noise limits. 展开更多
关键词 homodyne interferometry displacement measurement acoustic sensing remote sensing ultrastable laser
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Ultrafast and precise distance measurement via real-time chirped pulse interferometry
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作者 Jiawen Zhi Mingyang Xu +3 位作者 Yang Liu Mengyu Wang Chenggang Shao Hanzhong Wu 《Advanced Photonics Nexus》 2025年第2期118-134,共17页
Laser frequency combs,which are composed of a series of equally spaced coherent frequency components,have triggered revolutionary progress in precision spectroscopy and optical metrology.Length/distance is of fundamen... Laser frequency combs,which are composed of a series of equally spaced coherent frequency components,have triggered revolutionary progress in precision spectroscopy and optical metrology.Length/distance is of fundamental importance in both science and technology.We describe a ranging scheme based on chirped pulse interferometry.In contrast to the traditional spectral interferometry,the local oscillator is strongly chirped which is able to meet the measurement pulses at arbitrary distances,and therefore,the dead zones can be removed.The distances can be precisely determined via two measurement steps based on the time-of-flight method and synthetic wavelength interferometry,respectively.To overcome the speed limitation of the optical spectrum analyzer,the spectrograms are stretched and detected by a fast photodetector and oscilloscope and consequently mapped into the time domain in real time.The experimental results indicate that the measurement uncertainty can be well within±2μm,compared with the reference distance meter.The Allan deviation can reach 0.4μm at 4 ns averaging time and 25 nm at 1μs and can achieve 2 nm at 100μs averaging time.We also measured a spinning disk with grooves of different depths to verify the measurement speed,and the results show that the grooves with about 150 m∕s line speed can be clearly captured.Our method provides a unique combination of non-dead zones,ultrafast measurement speed,high precision and accuracy,large ambiguity range,and only one single comb source.This system could offer a powerful solution for field measurements in practical applications in the future. 展开更多
关键词 absolute distance measurement frequency comb chirped pulse interferometry
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The influence of position errors on stray light in compensation interferometry
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作者 Yutong Sun Qiang Cheng +3 位作者 Longxiang Li Xin Zhang Donglin Xue Xuejun Zhang 《Astronomical Techniques and Instruments》 2025年第2期111-118,共8页
Null compensation interferometry is the primary testing method for the manufacture of ultra-high-precision aspheric mirrors.The crosstalk fringes generated by stray light in interferometry can affect accuracy and pote... Null compensation interferometry is the primary testing method for the manufacture of ultra-high-precision aspheric mirrors.The crosstalk fringes generated by stray light in interferometry can affect accuracy and potentially prevent the testing from proceeding normally.Position errors include the decenter error,tilt error,and distance error.During the testing process,position errors will impact the testing accuracy and the crosstalk fringes generated by stray light.To determine the specific impact of position errors,we use the concept of Hindle shell testing of a convex aspheric mirror,and propose the simulation method of crosstalk fringes in null compensation interferometry.We also propose evaluation indices of crosstalk fringes in interferometry and simulate the influence of position errors on the crosstalk fringes.This work aims to help improve the design of compensation interferometry schemes,enhance the feasibility of the design,reduce engineering risks,and improve efficiency. 展开更多
关键词 Compensation interferometry Stray light Multi-beam interference Position error
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Mapping ultrafast timing jitter in dispersion- managed 89 GHz frequency microcombs via self-heterodyne linear interferometry
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作者 Wenting Wang Wenzheng Liu +15 位作者 Hao Liu Tristan Melton Alwaleed Aldhafeeri Dong-Il Lee Jinghui Yang Abhinav Kumar Vinod Jinkang Lim Yoon-Soo Jang Heng Zhou Mingbin Yu Patrick Guo-Qiang Lo Dim-Lee Kwong Peter DeVore Jason Chou Ninghua Zhu Chee Wei Wong 《Advanced Photonics Nexus》 2025年第3期120-130,共11页
Laser frequency microcombs provide a series of equidistant,coherent frequency markers across a broad spectrum,enabling advancements in laser spectroscopy,dense optical communications,precision distance metrology,and a... Laser frequency microcombs provide a series of equidistant,coherent frequency markers across a broad spectrum,enabling advancements in laser spectroscopy,dense optical communications,precision distance metrology,and astronomy.Here,we design and fabricate silicon nitride,dispersion-managed microresonators that effectively suppress avoided-mode crossings and achieve close-to-zero averaged dispersion.Both the stochastic noise and mode-locking dynamics of the resonator are numerically and experimentally investigated.First,we experimentally demonstrate thermally stabilized microcomb formation in the microresonator across different mode-locked states,showing negligible center frequency shifts and a broad frequency bandwidth.Next,we characterize the femtosecond timing jitter of the microcombs,supported by precise metrology of the timing phase and relative intensity noise.For the single-soliton state,we report a relative intensity noise of−153.2 dB∕Hz,close to the shot-noise limit,and a quantum-noise–limited timing jitter power spectral density of 0.4 as 2∕Hz at a 100 kHz offset frequency,measured using a self-heterodyne linear interferometer.In addition,we achieve an integrated timing jitter of 1.7 fs±0.07 fs,measured from 10 kHz to 1 MHz.Measuring and understanding these fundamental noise parameters in high clock rate frequency microcombs is critical for advancing soliton physics and enabling new applications in precision metrology. 展开更多
关键词 frequency microcomb timing jitter self-heterodyne linear interferometry dispersion-managed microresonator
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Quantum-enhanced interferometry with unbalanced entangled coherent states
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作者 Jun Tang Zi-Hang Du +2 位作者 Wei Zhong Lan Zhou Yu-Bo Sheng 《Chinese Physics B》 2025年第2期54-62,共9页
We propose a quantum-enhanced metrological scheme utilizing unbalanced entangled coherent states(ECSs) generated by passing a coherent state and a coherent state superposition through an unbalanced beam splitter(BS). ... We propose a quantum-enhanced metrological scheme utilizing unbalanced entangled coherent states(ECSs) generated by passing a coherent state and a coherent state superposition through an unbalanced beam splitter(BS). We identify the optimal phase sensitivity of this scheme by maximizing the quantum Fisher information(QFI) with respect to the BS transmission ratio. Our scheme outperforms the conventional scheme with a balanced BS, particularly in the presence of single-mode photon loss. Notably, our scheme retains quantum advantage in phase sensitivity in the limit of high photon intensity, where the balanced scheme offers no advantage over the classical strategy. 展开更多
关键词 quantum-enhanced interferometry entangled coherent state quantum Fisher information
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Noise-limited real-time orthogonal polarization spectral interferometry by suppressing phase noise
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作者 Tianchang Lu Jiarun Zhang +8 位作者 Yudong Cui Yueshu Xu Yusheng Zhang Youjian Song Longhua Tang Zhihua Ding Cuifang Kuang Minglie Hu Xu Liu 《Advanced Photonics Nexus》 2025年第4期12-21,共10页
Laser interferometry with higher resolution,faster update rate,and larger dynamic range is highly anticipated in the exploration of physics frontiers,advanced manufacturing,and precision sensing.Real-time dispersive s... Laser interferometry with higher resolution,faster update rate,and larger dynamic range is highly anticipated in the exploration of physics frontiers,advanced manufacturing,and precision sensing.Real-time dispersive spectral interferometry(DSI)shows promise for high-speed precision measurements,whereas the resolution of subnanometers has not yet been achieved.We present a comprehensive theoretical framework to analyze the limitations of real-time DSI based on the signal-to-noise ratio and data volume.A real-time orthogonal polarization spectral interferometry technique is proposed,which utilizes a pair of interferograms with the pi-phase shift to effectively mitigate the phase noise embedded in real-time spectral envelopes,thereby enabling the precise measurements with subnanometer resolution at megahertz frame rates.The recorded time series data are processed through interpolation,segmentation,time–frequency mapping,and de-enveloping to regain the typical cosine-shaped spectral evolution,followed by a fitting-based phase retrieval method to extract the interference phase.The phase resolution of 1.1 mrad(0.91 as for time delay and 0.3 nm for distance)is obtained at the update rate of 22.2 MHz even under the detection bandwidth of 500 MHz,and can be further enhanced to 0.29 mrad(0.24 as for time delay)after 500 times averaging(∼0.5 MHz).Our approach is validated through periodic phase modulations and applied to measure the rapid damped oscillations of a piezo stage,yielding results consistent with those obtained from a commercial picometer interferometer. 展开更多
关键词 dispersive spectral interferometry femtosecond laser dispersive Fourier transformation precision measurement phase retrieval
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A systematic review of Coda Wave Interferometry technique for evaluating rock behavior properties:From single to multiple perturbations
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作者 Jie Chen Chao Zhu +3 位作者 Yuanyuan Pu Yichao Rui Bo Liu Derek B.Apel 《Earth Energy Science》 2025年第2期180-192,共13页
Understanding rock behavior is crucial in mine geotechnical engineering to ensure construction efficiency,mitigate rock-related hazards,and promote environmental sustainability.Coda Wave Interferometry(CWI),a non-dest... Understanding rock behavior is crucial in mine geotechnical engineering to ensure construction efficiency,mitigate rock-related hazards,and promote environmental sustainability.Coda Wave Interferometry(CWI),a non-destructive ultrasonic testing method,has been widely employed to assess micro-damage evolution in rocks induced by perturbations in scatterer position,velocity,or source location due to its exceptional sensitivity.However,challenges persist in evaluating cross-scale rock behavior influenced by nonlinear deformation and multi-field interactions under multiple coupled perturbations.A comprehensive review of the perturbation factors affecting rock damage evolution and potential failure mechanisms is essential for presenting available knowledge in a more systematic and structured manner.This review provides an in-depth analysis of the CWI technique,encompassing its origins,theoretical framework,and classical data processing methodologies.Additionally,it explores the diverse applications of CWI in assessing rock behavior under various perturbation factors,including temperature variations,fluid infiltration,and stress conditions,with a particular emphasis on nonlinear deformation and multi-field coupling effects.Furthermore,a novel method for calculating relative velocity changes in coda waves is introduced,enabling a more precise characterization of the entire rock failure process.The study also proposes a cutting-edge concept of ultra-early and refined monitoring and warning technology for mine rock disasters,leveraging the advancements in CWI.Finally,the review highlights the potential future developments of CWI in high-level intelligent mining scenarios,particularly its integration with ambient noise interferometry and microseismic coda wave analysis.This work serves as a valuable reference,contributing to the refinement of CWI applications for assessing complex rock behavior and enhancing the accuracy of rock disaster prediction and early warning systems. 展开更多
关键词 Non-destructive monitoring Coda wave interferometry technique Nonlinear deformation Multi-field coupling Rock disasters warning
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Study on the gas field characteristics of SCB plasma using laser interferometry
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作者 WANG Renbao ZHOU Guojun +1 位作者 MA Qiushi ZHU Shunguan 《Optoelectronics Letters》 2025年第7期407-412,共6页
The semiconductor bridge(SCB)ignites through bridge film discharge,offering advantages such as low ignition energy,high safety,and compatibility with digital logic circuits.The study uses laser interferometry to inves... The semiconductor bridge(SCB)ignites through bridge film discharge,offering advantages such as low ignition energy,high safety,and compatibility with digital logic circuits.The study uses laser interferometry to investigate the gas dynamics of the bridge film after SCB plasma extinction.Interferometric images of the SCB film gas were obtained through a laser interferometry optical path.After the degradation model of digital image processing,clearer images were produced to facilitate analysis and calculation.The results show that the gas temperature at the center of the SCB film reaches a maximum of 1000 K,and the temperature rapidly decreases along the axial direction of the bridge surface to room temperature at 300 K.The maximum diffusion velocity of the plasma is 1.8 km/s.These findings provide critical insights for SCB design and ignition control. 展开更多
关键词 laser interferometry SCB plasma degradation model gas field characteristics digital image processingclearer gas dynamics digital logic circuitsthe semiconductor bridge scb ignites
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Nonlinear time-reversal interferometry with arbitrary quadratic collective-spin interaction
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作者 胡知遥 李其贤 +3 位作者 张轩晨 张贺宾 黄龙刚 刘永椿 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第8期63-70,共8页
Atomic nonlinear interferometry has wide applications in quantum metrology and quantum information science.Here we propose a nonlinear time-reversal interferometry scheme with high robustness and metrological gain bas... Atomic nonlinear interferometry has wide applications in quantum metrology and quantum information science.Here we propose a nonlinear time-reversal interferometry scheme with high robustness and metrological gain based on the spin squeezing generated by arbitrary quadratic collective-spin interaction,which could be described by the Lipkin–Meshkov–Glick(LMG)model.We optimize the squeezing process,encoding process,and anti-squeezing process,finding that the two particular cases of the LMG model,one-axis twisting and two-axis twisting outperform in robustness and precision,respectively.Moreover,we propose a Floquet driving method to realize equivalent time reverse in the atomic system,which leads to high performance in precision,robustness,and operability.Our study sets a benchmark for achieving high precision and high robustness in atomic nonlinear interferometry. 展开更多
关键词 time-reversal interferometry spin squeezing quantum metrology
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Study on the application of optical interferometry in the measurement of the coating thickness of color-coated plates
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作者 ZHANG Xiaota FAN Chun REN Yuling 《Baosteel Technical Research》 CAS 2024年第3期39-47,共9页
The principle and application of optical interferometry to measure the coating thickness of color-coated plates were introduced in this paper.Additionally,several factors affecting the test results,including coating r... The principle and application of optical interferometry to measure the coating thickness of color-coated plates were introduced in this paper.Additionally,several factors affecting the test results,including coating refractive index,wavelength range,and film thickness range setting,were analyzed.Among these,the refractive index of the color coating,which cannot be measured directly,was identified as the key factor.A solution to this problem was proposed.Finally,the optical interference method and the current detection methods,including the micrometer method and the magnetic eddy current method,were analyzed and compared.The results show that optical interferometry has better repeatability and reproducibility than the current methods and show no significant difference from the current methods through statistical tests.Therefore,the method can be applied to the detection of the coating thickness of color-coated plates. 展开更多
关键词 optical interferometry color-coated plates coating thickness
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Relative timing jitter compression in a Fabry-Pérot cavity-assisted free-running dual-comb interferometry
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作者 Chen Liu Liang Xu +2 位作者 Lei Zhang Chi Zhang Xinliang Zhang 《Advanced Photonics Nexus》 2024年第5期140-150,共11页
Dual-comb interferometric systems with high time accuracy have been realized for various applications.The flourishing ultralow noise dual-comb system promotes the measurement and characterization of relative timing ji... Dual-comb interferometric systems with high time accuracy have been realized for various applications.The flourishing ultralow noise dual-comb system promotes the measurement and characterization of relative timing jitter,thus improving time accuracy.With optical solutions,introducing an optical reference enables 105 harmonics measurements,thereby breaking the limit set by electrical methods;nonlinear processes or spectral interference schemes were also employed to track the relative timing jitter.However,such approaches operating in the time domain either require additional continuous references or impose stringent requirements on the amount of timing jitter.We propose a scheme to correct the relative timing jitter of a free-running dual-comb interferometry assisted by a Fabry-Pérot(F-P)cavity in the frequency domain.With high wavelength thermal stability provided by the F-P cavity,the absolute wavelength deviation in the operating bandwidth is compressed to<0.4 pm,corresponding to a subpicosecond sensitivity of pulse-to-pulse relative timing jitter.Also,Allan deviation of 10^(-10) is obtained under multiple coherent averaging,which lays the foundation for mode-resolved molecular spectroscopic applications.The spectral absorption features of hydrogen cyanide gas molecules at ambient temperature were measured and matched to the HITRAN database.Our scheme promises to provide new ideas on sensitive measurements of relative timing jitter. 展开更多
关键词 optical frequency comb dual-comb interferometry relative timing jitter postcalibration precision optical metrology
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星载P波段SAR森林覆盖层穿透测绘--欧洲空间局BIOMASS卫星综述
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作者 朱建军 谢雁洲 +1 位作者 付海强 汪长城 《武汉大学学报(信息科学版)》 北大核心 2025年第8期1457-1468,共12页
森林系统是陆地生物圈最大的碳汇系统,在全球碳循环中发挥重要作用。作为欧洲空间局“地球探索者”项目的第七个卫星计划,BIOMASS卫星将搭载全球首个全极化P波段合成孔径雷达(synthetic aperture radar,SAR)载荷执行以森林测绘为主的对... 森林系统是陆地生物圈最大的碳汇系统,在全球碳循环中发挥重要作用。作为欧洲空间局“地球探索者”项目的第七个卫星计划,BIOMASS卫星将搭载全球首个全极化P波段合成孔径雷达(synthetic aperture radar,SAR)载荷执行以森林测绘为主的对地观测任务,为全球碳循环建模及地表覆盖层“穿透测绘”提供有力的数据支撑。首先介绍了BIOMASS卫星系统设计与数据概况,BIOMASS卫星的三大主要任务、次要任务及其实现原理和方法,随后对BIOMASS任务所面临的潜在挑战进行分析,最后结合中国国情与实际需求对BIOMASS在国内应用进行讨论,并对国产民用P波段SAR卫星的研究进行展望。 展开更多
关键词 BIOMASS卫星 极化干涉SAR 森林覆盖层 穿透测绘 P波段SAR
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基于尾波干涉的隧道锚杆支护体系早期损伤监测与反演研究
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作者 赵鹏 刘书奎 +2 位作者 章俊 陈磊 丁蕗匀 《应用基础与工程科学学报》 北大核心 2025年第5期1408-1420,共13页
随着我国隧道工程建设的突飞猛进,及时监测并发现围岩早期损伤位置和尺寸是现代结构工程可持续发展的一个重要命题.隧道围岩由于孔隙、纹理发育等因素被视为强散射体,传统检测手段对于早期微小扰动的监测具有局限性.以对多重散射介质敏... 随着我国隧道工程建设的突飞猛进,及时监测并发现围岩早期损伤位置和尺寸是现代结构工程可持续发展的一个重要命题.隧道围岩由于孔隙、纹理发育等因素被视为强散射体,传统检测手段对于早期微小扰动的监测具有局限性.以对多重散射介质敏感的尾波干涉技术作为主要研究手段,通过仿真模拟了围岩不同工况下尾波的传播规律,编写Python脚本投放围岩散射体模型,研究了传感器位置优化、模型局部损伤、支护结构局部失效等工况下尾波的传播规律;使用稀疏重构算法进行了二维反演成像,并与超声直达波反演结果进行了对比,实现了对锚杆支护体系损伤的早期监测与定位. 展开更多
关键词 尾波干涉技术 无损检测 稀疏重构 散射体模型建立 隧道围岩
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望远镜指向抖动与波前畸变耦合的仿真分析(特邀)
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作者 王鹏 张洪霄 +1 位作者 林旭东 李明 《光子学报》 北大核心 2025年第2期50-57,共8页
现有的模型中耦合噪声的提取方法精度不足,提出采用精度更高且速度较快的差分进化算法提取耦合噪声。基于该方法并结合蒙特卡洛仿真给出了满足噪声指标1 pm/Hz^(1/2)和10 pm/Hz^(1/2)@0.1 mHz~1 Hz时的望远镜出瞳波前质量与指向抖动指标... 现有的模型中耦合噪声的提取方法精度不足,提出采用精度更高且速度较快的差分进化算法提取耦合噪声。基于该方法并结合蒙特卡洛仿真给出了满足噪声指标1 pm/Hz^(1/2)和10 pm/Hz^(1/2)@0.1 mHz~1 Hz时的望远镜出瞳波前质量与指向抖动指标,为后期望远镜的制造与指向操控系统提供了理论基础。 展开更多
关键词 空间引力波探测 星间激光干涉 望远镜 波前畸变 指向抖动
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基于地震干涉的复杂构造局部成像
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作者 刁瑞 葛大明 +3 位作者 孔庆丰 燕新跃 韩睿 谷丙洛 《物探与化探》 2025年第4期869-877,共9页
随着我国油气勘探的不断深入,如今地震勘探成像的重点从大尺度整体成像逐渐转向小尺度复杂构造体成像。受地震波传播机理的限制,小尺度、高陡等复杂构造存在界面反射信息拾取困难、反射能量弱等问题,常规地面地震勘探成像方式难以实现... 随着我国油气勘探的不断深入,如今地震勘探成像的重点从大尺度整体成像逐渐转向小尺度复杂构造体成像。受地震波传播机理的限制,小尺度、高陡等复杂构造存在界面反射信息拾取困难、反射能量弱等问题,常规地面地震勘探成像方式难以实现精确成像。通过地震干涉法能够使虚拟观测系统更靠近目标区域,提高对复杂界面的成像分辨率,实现面向目标构造的高精度成像。笔者对地震干涉原理进行理论推导,对小尺度模型进行正演模拟,将生成的干涉道集与实际参考道集进行对比,验证了干涉方法的正确性。将该方法应用到BP气云模型和高陡构造—薄互层模型进行数值试算,并将成像结果与常规RTM成像结果进行对比,证明了地震干涉法可以实现对深层复杂构造的高精度成像。 展开更多
关键词 复杂构造 波场重构 地震干涉成像
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融合SBAS-InSAR与SSA-BiGRU-ATT的排土场边坡形变监测与预测——以吉林郭勒某露天矿排土场为例
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作者 李如仁 王跃 +1 位作者 黄二东 肖大勇 《东华理工大学学报(自然科学版)》 北大核心 2025年第5期473-484,共12页
露天矿区排土场边坡内部作用机理复杂,以吉林郭勒某露天矿排土场为例,进行边坡形变监测与预测,预防滑坡等地质灾害的发生,进而保障矿山安全生产。首先,借助短基线集干涉测量(SBAS-InSAR)技术提取2 a时序形变信息,拾取特征点累计形变量与... 露天矿区排土场边坡内部作用机理复杂,以吉林郭勒某露天矿排土场为例,进行边坡形变监测与预测,预防滑坡等地质灾害的发生,进而保障矿山安全生产。首先,借助短基线集干涉测量(SBAS-InSAR)技术提取2 a时序形变信息,拾取特征点累计形变量与GPS监测结果比对,初步甄别排土场滑坡隐患体;其次,将降雨量与沉降量关联,通过周期项位移曲线分析两者波动关联特性;最后,构建注意力机制下麻雀搜索算法双向门控循环单元神经网络(SSA-BiGRU-ATT)预测模型,同时引入意力机制下双向门控循环单元神经网络模型(BiGRU-ATT)、双向门控循环单元神经网络模型(BiGRU)和长短期记忆模型(LSTM)验证模型适用性。结果表明,SBAS-InSAR技术对排土场边坡形变监测满足精度要求,误差棒指标揭示出其与GPS实测数据间最大绝对误差为6.03 mm,均方根误差为2.87 mm;排土场中部和南部共出现3处明显沉降区域,最大累计形变量分别为100.68、97.46、91.74 mm;降雨量为排土场边坡形变主要诱因,两者呈正相关周期性波动;4类模型中,SSA-BiGRU-ATT模型训练集与测试集拟合度高,收敛速度快,预测精度较优,3个特征点预测结果最大值的均方根误差小于2.76 mm,平均绝对误差小于1.63 mm,平均绝对百分比误差小于2.75%。预测结果可准确反映沉降特性和波动趋势,为排土场边坡形变监测及灾害预警提供技术支撑。 展开更多
关键词 排土场滑坡 短基线集干涉测量 动态形变监测 沉降预测 SSA-BiGRU-ATT
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喀什13 m VLBI天线接收频段优化及结果分析
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作者 马浪明 刘佳 +4 位作者 韦沛 李西顺 南凯 姚当 杨旭海 《时间频率学报》 2025年第1期60-67,共8页
喀什13 m甚长基线干涉测量(very long baseline interferometry,VLBI)观测站是中国科学院国家授时中心宽带VLBI观测系统的重要台站,特别是对世界时UT1测量有着不可替代的作用。随着城市的快速扩张和5G移动通信普及,5G移动通信信号等强... 喀什13 m甚长基线干涉测量(very long baseline interferometry,VLBI)观测站是中国科学院国家授时中心宽带VLBI观测系统的重要台站,特别是对世界时UT1测量有着不可替代的作用。随着城市的快速扩张和5G移动通信普及,5G移动通信信号等强干扰导致喀什观测站天线系统灵敏度严重下降,严重影响了世界时UT1常规观测。针对此问题,提出利用超导滤波器将接收频带从C频段调整为X频段,设计了优化调整方案并进行了改造实施。测试结果表明,优化后基线灵敏度较优化前C频段提升3.7倍,UT1测量精度提升了12%。 展开更多
关键词 甚长基线干涉测量 射频干扰 世界时
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矿山变形监测中的测量方法研究
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作者 唐均 何俊 《世界有色金属》 2025年第9期187-189,共3页
为了有效监测和控制矿山变形,我们开展了针对矿山变形测量方法的研究。首先,阐述了矿山变形的基本理论和分类,然后综述了传统测量方法(例如基准线测法和角度观测法)以及新型测量方法,如无人机测绘和雷达干涉测量方法。我们分别对以上测... 为了有效监测和控制矿山变形,我们开展了针对矿山变形测量方法的研究。首先,阐述了矿山变形的基本理论和分类,然后综述了传统测量方法(例如基准线测法和角度观测法)以及新型测量方法,如无人机测绘和雷达干涉测量方法。我们分别对以上测量方法进行了详细的对比分析,结果表明,新型测量方法对于矿山变形的动态监测更为准确和实时。但每种方法均有其特点和局限性,需要根据实际矿山环境和条件进行选择。本研究旨在为矿山变形监测提供科学的测量方法选择依据,为矿山安全保障提供理论支持。 展开更多
关键词 矿山变形 测量方法 无人机测绘 雷达干涉测量 矿山安全
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Joint interferometric imaging of walkaway VSP data 被引量:4
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作者 王保利 朱光明 高静怀 《Applied Geophysics》 SCIE CSCD 2010年第1期41-48,99,共9页
In this paper,we image the subsurface reflectors by interferometric imaging using primary and downgoing first-order free-surface related multiple reflections in walkaway VSP data.By analyzing the stack fold distributi... In this paper,we image the subsurface reflectors by interferometric imaging using primary and downgoing first-order free-surface related multiple reflections in walkaway VSP data.By analyzing the stack fold distribution,we find that primary-direct interferometric imaging has a smaller image range,but its stack fold is higher near the well while ghostdirect interferometric imaging is the opposite.We try to solve this problem by the joint interferometric imaging of walkaway VSP data,combining primary-direct interferometric imaging with ghost-direct interferometric imaging.In this way,we can effectively widen the imaging range,simultaneously increase the fold(especially near the well),suppress spurious interference,and improve the image SNR,so that we can get a more credible image.Test results on synthetic walkaway VSP data and field data show that joint interferometric imaging is very effective. 展开更多
关键词 interferometry IMAGING multiple wave walkaway VSP
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