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Shear interferometric measurement of electron density in a laser-ablated GAP-coated nano-aluminium plasma plume
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作者 Yuhong DENG Lunan WANG +4 位作者 Zhengyue QU Xilong YU Shaohua ZHANG Li DUAN Qi KANG 《Science China(Technological Sciences)》 2026年第2期145-154,共10页
Understanding the plasma dynamics of advanced energetic materials is crucial for their application.For the first time,this study presents a quantitative,two-dimensional mapping of the electron density distribution in ... Understanding the plasma dynamics of advanced energetic materials is crucial for their application.For the first time,this study presents a quantitative,two-dimensional mapping of the electron density distribution in plasma plumes generated by the laser ablation of glycidyl azide polymer(GAP)-coated nano-aluminum(Al@GAP).We employed a timeresolved,full-field polarizing shear interferometer to capture the plume's spatiotemporal evolution.By analyzing interference fringe shifts with an Abel inversion,we systematically investigated the effects of laser fluence(5.8-24.6 J/cm^(2))and ambient pressure(10-75 kPa).The results reveal peak electron densities on the order of 10^(16)cm^(-3)and complex plume structures governed by interactions with the ambient gas.Notably,we observed a non-monotonic relationship between laser fluence and central electron density,with higher fluences promoting radial expansion and reducing central density.These findings provide unprecedented quantitative insight into the energy release mechanisms and fluid dynamics of Al@GAP plasmas,offering a critical dataset for optimizing high-performance propellants,laser propulsion systems,and other energy-release applications. 展开更多
关键词 polarizing shear interferometry plasma plume electron density flow visualization Al@GAP
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Wall-shear stress measurement via oil-film interferometry being enhanced by quasi-bivariate variational mode decomposition
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作者 Yi ZHANG Chong PAN +3 位作者 Chunpeng LI Hao LIN Hui GUO Jinjun WANG 《Science China(Technological Sciences)》 2026年第2期1-18,共18页
Characterized by high accuracy and operational simplicity,oil-film interferometry(OFI)has served as an effective wall-shear stress(WSS)measurement technique over the past decades.It utilizes the monochromatic light in... Characterized by high accuracy and operational simplicity,oil-film interferometry(OFI)has served as an effective wall-shear stress(WSS)measurement technique over the past decades.It utilizes the monochromatic light interference principle to measure the temporal variation of oil-film thickness caused by WSS,and calculates time-averaged WSS based on the variation of interference fringe width.However,small-scale noise,which is caused by defects on the target surface,ambient dust,and local oil-film non-uniformity,contaminates the interference fringe patterns and directly increases the measurement uncertainty.One practical way is to apply denoising methods to improve the accuracy of identifying the centroids of fringes.In the present study,quasi-bivariate variational mode decomposition(QBVMD)is proposed as a self-adaptive denoising method to remove small-scale noise.Since no characteristic information of fringe patterns is required in the QBVMD-based denoising method,it has higher accuracy and lower uncertainty than the conventional OFI denoising methods,which need to pre-set the mask signal or the bandpass frequency,i.e.,cross-correlation or spectral filtering.Thus,it facilitates the automatic identification of time-varying inhomogeneous fringes.Two sets of experiments,i.e.,WSS measurement on either a canonical flat-plate turbulent boundary layer(TBL)or a TBL perturbed by micro vortex generators(MVG),were conducted to validate the applicability of this QBVMD-OFI method.The former experiment shows that the accuracy of QBVMD-OFI is equivalent to near-wall high-resolution particle image velocimetry,and is considerably higher than that of a dual hot-film sensor.As for the latter,QBVMD-OFI provides sufficient spatial resolution to resolve fine WSS structures generated by MVG. 展开更多
关键词 wall-shear stress measurement oil-film interferometry turbulent boundary layer micro vortex generator
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Demonstration of the MICRO solar magnetograph using silicon nitride photonics and interferometric imaging
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作者 Humphry Chen Shelbe Timothy +4 位作者 Neal Hurlburt Gopal Vasudevan Lawrence Shing Tony Kowalczyk Simon Avery 《Advanced Photonics Nexus》 2025年第6期99-107,共9页
We demonstrate a silicon nitride photonics-based imaging system that can perform one-dimensional interferometric imaging around the 1550-nm wavelength.The magnetograph using interferometric and computational imaging f... We demonstrate a silicon nitride photonics-based imaging system that can perform one-dimensional interferometric imaging around the 1550-nm wavelength.The magnetograph using interferometric and computational imaging for remote observations(MICRO)design uses silicon nitride on a Si platform to replace the bulky free-space optics of traditional magnetograph imaging systems with nanofabricated structures of a fraction of the size.The photonic integrated circuit(PIC)uses an array of lenslets that couple light into four input waveguides with spacing arranged along a Golomb ruler,where each aperture pair formed has a unique length.Each aperture is mixed with a 13-dBm reference laser and separated inside a 2×4 optical hybrid to generate in-phase and quadrature-phase signals to be detected in balanced detectors at the output of the PIC.We use a field programmable gate array(FPGA)board to digitize and process the measurements.The FPGAs and PIC are combined to reduce the overall size,weight,and power of the system,paving the way for a compact imaging system.We demonstrate a PIC-based imager design and experimental testbed for spectrometry applications. 展开更多
关键词 magnetograph PHOTONICS solar imaging interferometry
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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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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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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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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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Revisiting the quantum parameter estimation approach for Mach–Zehnder interferometry
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作者 Bing-Shu Hu Xiao-Ming Lu 《Communications in Theoretical Physics》 2025年第10期132-137,共6页
The Mach-Zehnder interferometer is a fundamental tool for measuring phase shifts between two light paths,serving as a crucial prototype for achieving high-precision measurements in various scientific and technological... The Mach-Zehnder interferometer is a fundamental tool for measuring phase shifts between two light paths,serving as a crucial prototype for achieving high-precision measurements in various scientific and technological applications.In this study,we analyze different models for estimating the relative phase shift in a general two-arm Mach-Zehnder interferometer.We demonstrated that single-parameter estimation models can be reduced from the two-parameter estimation model by imposing appropriate constraints on the parameter space.To make quantum Fisher information of the single-parameter estimation models meaningful,the corresponding constraints must be guaranteed in the experiment implementation.Furthermore,we apply the quantum Fisher information approach to analyze the Mach-Zehnder interferometer with the an input state composed of a displaced squeezed vacuum state and a coherent state,providing insights into the precision limits of such configurations. 展开更多
关键词 quantum parameter estimation Mach-Zehnder interferometry quantum metrology
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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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Resolving phase errors in microsphere assisted interferometry
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作者 HONG Yujian FU Xiaofeng +1 位作者 SU Zhongyuan HU Xiaodong 《Journal of Measurement Science and Instrumentation》 2025年第4期498-504,共7页
Microsphere assisted microscopy(MAM)has been rapidly developed to meet the measurement needs of microstructures.MAM can be integrated with optical interference microscopy(OIM)to achieve high lateral resolution surface... Microsphere assisted microscopy(MAM)has been rapidly developed to meet the measurement needs of microstructures.MAM can be integrated with optical interference microscopy(OIM)to achieve high lateral resolution surface profile measurement.However,the microspheres introduce intricate phase changes,resulting in optical path asymmetry which is very challenging to compensate for.This limitation constrains the application of MAM in OIM.In this paper,simulation analysis reveals that the phase transmission of the microsphere is influenced by parameters such as microsphere diameter and its relative position to the sample.It is concluded that a unique compensation process must be adopted for each individual microsphere.Addressing this issue,we proposed a phase compensation algorithm based on the three-dimensional position control of the microsphere and integrated it into our combined system of MAM and white light interferometry(WLI),reducing the phase errors introduced by the microspheres while enhancing the lateral resolution of optical system.This approach improved the profile measurement accuracy,offering a perspective for optically measuring the surface profile of intricate microstructures. 展开更多
关键词 microsphere assisted microscopy microsphere assisted interferometry optical interference microscopy surface profile measurement phase compensation
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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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双波长全光纤激光干涉速度复测技术
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作者 王为 刘盛刚 +4 位作者 谷伟 陶天炯 马鹤立 王翔 翁继东 《高压物理学报》 北大核心 2026年第3期31-37,共7页
针对冲击爆轰实验中对速度测量系统的高可靠性要求,基于光纤波分复用/解复用技术,提出了一种双波长全光纤激光干涉速度复测方法及技术。设计并搭建了一套速度复测原理验证系统,采用1530.3和1550.0 nm 2个波长,在气体炮上开展了低速、高... 针对冲击爆轰实验中对速度测量系统的高可靠性要求,基于光纤波分复用/解复用技术,提出了一种双波长全光纤激光干涉速度复测方法及技术。设计并搭建了一套速度复测原理验证系统,采用1530.3和1550.0 nm 2个波长,在气体炮上开展了低速、高速2种典型状态下的动态验证实验。实验结果显示,利用单一光纤探头实现了样品自由面运动速度的复测,2个波长系统得到的速度测量结果具有较好的一致性,速度相对偏差在±1.5%以内。 展开更多
关键词 激光干涉 多普勒测速 波分复用 速度复测
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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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Research on 3D marine electromagnetic interferometry with synthetic sources for suppressing the airwave interference 被引量:2
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作者 张建国 武欣 +2 位作者 齐有政 黄玲 方广有 《Applied Geophysics》 SCIE CSCD 2013年第4期373-383,510,共12页
In order to suppress the airwave noise in marine controlled-source electromagnetic (CSEM) data, we propose a 3D deconvolution (3DD) interferometry method with a synthetic aperture source and obtain the relative an... In order to suppress the airwave noise in marine controlled-source electromagnetic (CSEM) data, we propose a 3D deconvolution (3DD) interferometry method with a synthetic aperture source and obtain the relative anomaly coefficient (RAC) of the EM field reflection responses to show the degree for suppressing the airwave. We analyze the potential of the proposed method for suppressing the airwave, and compare the proposed method with traditional methods in their effectiveness. A method to select synthetic source length is derived and the effect of the water depth on RAC is examined via numerical simulations. The results suggest that 3DD interferometry method with a synthetic source can effectively suppress the airwave and enhance the potential of marine CSEM to hydrocarbon exploration. 展开更多
关键词 marine CSEM reflection response airwave synthetic aperture method 3D deconvolution interferometry up- and down-going field decomposition
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地基cGNSS-R双天线干涉测高试验研究
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作者 洪学宝 李杰 +2 位作者 邢进 杨鹏瑜 杨东凯 《北京航空航天大学学报》 北大核心 2026年第1期140-146,共7页
地基场景下,传统全球导航卫星系统反射计(cGNSS-R)的直射、反射天线会接收到持续的反射、直射多径,对载波相位测高应用极为不利,但也为双天线干涉测高提供了可能。针对地基cGNSS-R双天线干涉测高的可行性问题,开展了水面测高试验研究。... 地基场景下,传统全球导航卫星系统反射计(cGNSS-R)的直射、反射天线会接收到持续的反射、直射多径,对载波相位测高应用极为不利,但也为双天线干涉测高提供了可能。针对地基cGNSS-R双天线干涉测高的可行性问题,开展了水面测高试验研究。采集上视右旋圆极化(RHCP)天线和下视左旋圆极化(LHCP)天线接收的全球定位系统(GPS)L1 C/A信号数据,处理得到两天线实际接收信号的相关功率序列,利用干涉测高方法处理该序列实现了天线高度反演。结果显示:RHCP天线和LHCP天线干涉测高结果与实测天线高度的相关系数分别为0.77和0.95,测高结果平均绝对误差分别为0.15 m和0.04 m,均方根误差分别为0.17 m和0.04 m。试验证明了传统全球卫星导航系统反射计的RHCP天线和LHCP天线均具备干涉测高能力,且LHCP天线干涉测高在有限开阔场景下的性能更优。 展开更多
关键词 全球定位系统 反射计 干涉测量 水面高度 测高
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基于ResAtt-UNet框架的散斑干涉相位解包裹算法
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作者 张鸿昊 王慧青 余厚云 《激光技术》 北大核心 2026年第1期108-116,共9页
为了克服传统相位解包裹方法在噪声鲁棒性、计算效率及不连续区域适应性方面的局限性,设计了结合残差结构、注意力机制和特征金字塔等模块的U型网络框架(ResAtt-UNet)的散斑干涉相位解包裹算法。通过模拟数据集对算法进行训练,并基于仿... 为了克服传统相位解包裹方法在噪声鲁棒性、计算效率及不连续区域适应性方面的局限性,设计了结合残差结构、注意力机制和特征金字塔等模块的U型网络框架(ResAtt-UNet)的散斑干涉相位解包裹算法。通过模拟数据集对算法进行训练,并基于仿真数据进行了模拟测试。结果表明,该算法的均方根误差均值为0.0837,结构相似度均值为0.9996;计算得到的最大相对变形值为3.3800µm,与真实值接近;解包裹效果更清晰平滑,受背景噪声的影响相对较小,展现出良好的鲁棒性和泛化能力。ResAtt-Unet算法显著提升了噪声环境下相位解包裹的精度和效率,为动态形变测量提供了可靠解决方案。 展开更多
关键词 图像处理 相位解包裹 深度学习 激光散斑干涉
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基于马赫–曾德尔干涉的蒸发液滴瞬态气相浓度场表征
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作者 刘城庆 吴君军 +1 位作者 朱恂 廖强 《工程热物理学报》 北大核心 2026年第1期284-291,共8页
液滴蒸发是最基础、最广泛、最重要的物理过程之一,但蒸发液滴动态过程的气相浓度表征极具挑战性。本文采用激光全息干涉技术,获得了乙醇–水双组分液滴蒸发过程中的气相浓度分布,并对丙二醇–水双组分液滴系统聚并现象进行观测。结果表... 液滴蒸发是最基础、最广泛、最重要的物理过程之一,但蒸发液滴动态过程的气相浓度表征极具挑战性。本文采用激光全息干涉技术,获得了乙醇–水双组分液滴蒸发过程中的气相浓度分布,并对丙二醇–水双组分液滴系统聚并现象进行观测。结果表明,不同组分液滴的蒸发速率和气相浓度场显著不同,且浓度梯度是驱动双组分液滴自发聚并运动的关键因素。本文提出了液滴蒸发特性表征的新思路,可为探索更加复杂的多组分液滴行为提供参考。 展开更多
关键词 全息干涉 液滴蒸发 浓度场 液滴聚并 热工测量
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用于原子干涉的光学锁相环技术研究进展
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作者 刘攀 肖玉华 +4 位作者 张炯阳 王骥 廉吉庆 杨炜 陈江 《真空与低温》 2026年第1期87-99,共13页
光学锁相环(OPLL)作为制备高质量相干光的有效方法,在原子干涉精密测量领域有着广泛而成熟的应用。利用相位锁定环路对光学信号频率与相位进行锁定,从而产生相位相干的激光,OPLL具有频差调节范围宽、相位噪声小、无边带干扰和相干光空... 光学锁相环(OPLL)作为制备高质量相干光的有效方法,在原子干涉精密测量领域有着广泛而成熟的应用。利用相位锁定环路对光学信号频率与相位进行锁定,从而产生相位相干的激光,OPLL具有频差调节范围宽、相位噪声小、无边带干扰和相干光空间易分离等优势。相较于利用声光调制、电光调制等其他相干光制备方法实现的原子干涉精密测量传感器,采用OPLL技术实现的传感器具有更好的性能。通过阐述OPLL的基本原理及光路结构,综述并评价了国内外用于原子干涉的OPLL技术发展现状与采用的技术方案,并结合原子干涉精密测量特点,在分析总结OPLL技术的基础上,提出了与数字控制技术结合、系统向集成化与模块化演进、基于光子集成实现芯片化等三大发展趋势。研究结果为提升OPLL的综合性能,满足基础物理研究、惯性导航及空间探测等领域所需的高精度原子干涉精密测量传感器提供有力支撑。 展开更多
关键词 原子干涉 光学锁相环 相位锁定 相干光
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