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Controllable two-dimensional asymmetric diffraction grating via vortex light in a semiconductor double quantum wells system
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作者 Kunpeng Zhao Duo Zhang +1 位作者 Junbing Guo Jiaqian Li 《Communications in Theoretical Physics》 2025年第8期49-58,共10页
We present a theoretical scheme to realize two-dimensional(2D)asymmetric diffraction grating in a five-level inverted Y-type asymmetric double semiconductor quantum wells(SQWs)structure with resonant tunneling.The SQW... We present a theoretical scheme to realize two-dimensional(2D)asymmetric diffraction grating in a five-level inverted Y-type asymmetric double semiconductor quantum wells(SQWs)structure with resonant tunneling.The SQW structure interacts with a weak probe laser field,a spatially independent 2D standing-wave(SW)field,and a Laguerre–Gaussian(LG)vortex field,respectively.The results indicate that the diffraction patterns are highly sensitive to amplitude modulation and phase modulation.Because of the existence of vortex light,it is possible to realize asymmetric high-order diffraction in the SQW structure,and then a 2D asymmetric grating is established.By adjusting the detunings of the probe field,vortex field,and SW field,as well as the interaction length,diffraction intensity,and direction of the 2D asymmetric electromagnetically induced grating(EIG)can be controlled effectively.In addition,the number of orbital angular momenta(OAM)and beam waist parameter can be used to modulate the diffraction intensity and energy transfer of the probe light in different regions.High-order diffraction intensity is enhanced and high-efficiency 2D asymmetric diffraction grating with different diffraction patterns is obtained in the scheme.Such 2D asymmetric diffraction grating may be beneficial to the research of optical communication and innovative semiconductor quantum devices. 展开更多
关键词 asymmetric diffraction grating standing-wave field laguerre-gaussian vortex field diffraction property semiconductor quantum well
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Diffraction classification imaging using coordinate attention enhanced DenseNet
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作者 Tong-Jie Sheng Jing-Tao Zhao +2 位作者 Su-Ping Peng Zong-Nan Chen Jie Yang 《Petroleum Science》 2025年第6期2353-2383,共31页
In oil and gas exploration,small-scale karst cavities and faults are important targets.The former often serve as reservoir space for carbonate reservoirs,while the latter often provide migration pathways for oil and g... In oil and gas exploration,small-scale karst cavities and faults are important targets.The former often serve as reservoir space for carbonate reservoirs,while the latter often provide migration pathways for oil and gas.Due to these differences,the classification and identification of karst cavities and faults are of great significance for reservoir development.Traditional seismic attributes and diffraction imaging techniques can effectively identify discontinuities in seismic images,but these techniques do not distinguish whether these discontinuities are karst cavities,faults,or other structures.It poses a challenge for seismic interpretation to accurately locate and classify karst cavities or faults within the seismic attribute maps and diffraction imaging profiles.In seismic data,the scattering waves are associated with small-scale scatters like karst cavities,while diffracted waves are seismic responses from discontinuous structures such as faults,reflector edges and fractures.In order to achieve classification and identification of small-scale karst cavities and faults in seismic images,we propose a diffraction classification imaging method which classifies diffracted and scattered waves in the azimuth-dip angle image matrix using a modified DenseNet.We introduce a coordinate attention module into DenseNet,enabling more precise extraction of dynamic and azimuthal features of diffracted and scattered waves in the azimuth-dip angle image matrix.Leveraging these extracted features,the modified DenseNet can produce reliable probabilities for diffracted/scattered waves,achieving high-accuracy automatic classification of cavities and faults based on diffraction imaging.The proposed method achieves 96%classification accuracy on the synthetic dataset.The field data experiment demonstrates that the proposed method can accurately classify small-scale faults and scatterers,further enhancing the resolution of diffraction imaging in complex geologic structures,and contributing to the localization of karstic fracture-cavern reservoirs. 展开更多
关键词 diffraction imaging diffraction classification Azimuth-dip angle image matrix Coordinate attention DenseNet
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Polarization-sensitive nonlinear optical diffraction
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作者 Jianluo Chen Lihong Hong +2 位作者 Yu Zou Jiacheng Li Zhi-Yuan Li 《Chinese Physics B》 2025年第6期350-355,共6页
When a laser beam is incident on a nonlinear grating with a laterally modulated second-order nonlinear coefficient,nonlinear diffraction of the noncollinear second-harmonic generation(SHG)signal occurs,with Raman–Nat... When a laser beam is incident on a nonlinear grating with a laterally modulated second-order nonlinear coefficient,nonlinear diffraction of the noncollinear second-harmonic generation(SHG)signal occurs,with Raman–Nath nonlinear diffraction(NRND)being a prominent example.As these SHG NRND processes involve coupling between the fundamental-wave pump laser vectorial field and the SHG laser vectorial field through the second-order nonlinearity secondrank tensor of the nonlinear crystal,the nonlinear interaction between light and the nonlinear grating can be manipulated by adjusting the polarization state of the pump laser.In this paper,we derive the relationship between the polarization state of the incident light and the generated nonlinear diffraction signal based on the nonlinear coupled wave equation and experimentally validate the predicted diffraction characteristics.The results show that the optical properties of each order of NRND are highly sensitive to the polarization angle of the incident pump laser beam. 展开更多
关键词 Raman–Nath nonlinear diffraction(NRND) nonlinear diffraction POLARIZATION
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Sub-Diffraction Limit Quantum Metrology for Nanofabrication
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作者 Wenyi Ye Yang Li +10 位作者 Lianwei Chen Mingbo Pu Zheting Meng Yuanjian Huang Hengshuo Guo Xiaoyin Li Yinghui Guo Xiong Li Yun Long Emmanuel Stratakis Xiangang Luo 《Engineering》 2025年第6期96-103,共8页
Optical monitoring of object position and alignment with nanoscale precision is critical for ultra-precision measurement applications,such as micro/nano-fabrication,weak force sensing,and micro-scopic imaging.Traditio... Optical monitoring of object position and alignment with nanoscale precision is critical for ultra-precision measurement applications,such as micro/nano-fabrication,weak force sensing,and micro-scopic imaging.Traditional optical nanometry methods often rely on precision nanostructure fabrication,multi-beam interferometry,or complex post-processing algorithms,which can limit their practical use.In this study,we introduced a simplified and robust quantum measurement technique with an achievable resolution of 2.2 pm and an experimental demonstration of 1 nm resolution,distinguishing it from conventional interferometry,which depended on multiple reference beams.We designed a metasurface substrate with a mode-conversion function,in which an incident Gaussian beam is converted into higher-order transverse electromagnetic mode(TEM)modes.A theoretical analysis,including calculations of the Fisher information,demonstrated that the accuracy was maintained for nanoscale displacements.In conclusion,the study findings provide a new approach for precise alignment and metrology of nanofabrication and other advanced applications. 展开更多
关键词 Nanofabrication Precision measurement diffraction limit Quantum metrology
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Tension-compression asymmetry of an AM magnesium alloy unveiled by in-situ synchrotron X-ray diffraction
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作者 Hao Chen Huicong Chen +6 位作者 Yuanding Huang Weimin Gan Emad Maawad Weidong Xie Guobing Wei Yan Yang Yu Zou 《Journal of Magnesium and Alloys》 2025年第11期5421-5437,共17页
Magnesium(Mg)alloys typically exhibit anisotropic mechanical behaviors due to their hexagonal close-packed(hcp)crystal structures,often leading to tension-compression asymmetries.Understanding of the asymmetrical and ... Magnesium(Mg)alloys typically exhibit anisotropic mechanical behaviors due to their hexagonal close-packed(hcp)crystal structures,often leading to tension-compression asymmetries.Understanding of the asymmetrical and related deformation mechanisms is crucial for their structural applications,particularly in the lightweight transportation industries.Nevertheless,the underlying deformation mechanisms(e.g.,slip versus twinning)at each deformation stage during tension and compression have not been fully understood.In this study,we employed tensile and compressive tests on extruded Al and Mn containing Mg alloy,i.e.,an AM alloy Mg-0.6Mn-0.5Al-0.5Zn-0.4Ca,during the synchrotron X-ray diffraction.Our results show that distinct deformation behaviors and mechanisms in tension and compression are associated with the strong texture in the extruded samples:(i)The tensile deformation is dominated by dislocation slips,with activation of non-basaland<c+a>slip,but deformation twinning is suppressed.(ii)The compressive deformation shows early-stage tensile twinning,followed by dislocation slips.Twinning induces grain reorientation,leading to significant lattice strain evolution aligned with the texture.The pronounced tension-compression asymmetry is attributed to the favorable shear stress direction formed in the twinning system during compression,which facilitates the activation of tensile twins.During tension,the strain hardening rate(SHR)drops significantly after yielding due to limited activated slip systems.In contrast,the samples under compression exhibit significant increases in SHR after yielding.During compression,dislocation multiplication dominates the initial strain hardening,while twinning progressively contributes more significantly than dislocation slip at higher strains.This study improves our understanding of the tension-compression and strain hardening asymmetries in extruded AM Mg alloys. 展开更多
关键词 Mg alloy Plastic deformation DISLOCATION TWINNING Synchrotron X-ray diffraction
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Nonlinear Raman–Nath diffraction of inclined femtosecond laser by periodically poled lithium niobate nonlinear grating
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作者 Jiacheng Li Lihong Hong +2 位作者 Yu Zou Jianluo Chen Zhi-Yuan Li 《Chinese Physics B》 2025年第5期424-429,共6页
When a pump laser beam strikes the surface of a nonlinear crystal with modulated second-order nonlinearity,various nonlinear diffraction phenomena occur,with nonlinear Raman–Nath diffraction(NRND)being a prominent ex... When a pump laser beam strikes the surface of a nonlinear crystal with modulated second-order nonlinearity,various nonlinear diffraction phenomena occur,with nonlinear Raman–Nath diffraction(NRND)being a prominent example.In this study,we use an 800-nm Ti:sapphire femtosecond laser beam to pump the surface of a periodically poled lithium niobate(PPLN)crystal thin-plate nonlinear grating.By rotating the crystal,we change the incidence angle and observe and measure the exit angle,polarization,and power of NRND spots on the other side of the crystal.The experiment shows that NRND characteristics are highly sensitive to the incidence angle of the pump laser beam,which are consistent with the theoretical prediction.We expect that this research will advance the understanding of nonlinear diffraction and provide valuable insights for nonlinear optical interaction in complicated geometric and physical configurations. 展开更多
关键词 nonlinear diffraction second harmonic quasi-phase matching oblique incidence
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High-speed and low-latency optical feature extraction engine based on diffraction operators
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作者 Run Sun Yuemin Li +5 位作者 Tingzhao Fu Yuyao Huang Wencan Liu Zhenmin Du Sigang Yang Hongwei Chen 《Advanced Photonics Nexus》 2025年第5期133-143,共11页
Feature extraction in the optical domain offers a promising low-latency,high-throughput solution.Optical diffraction-based feature extraction operating under a coherent light source can further achieve parallel output... Feature extraction in the optical domain offers a promising low-latency,high-throughput solution.Optical diffraction-based feature extraction operating under a coherent light source can further achieve parallel outputs with low energy consumption.However,it presents significant challenges for maintaining the coherent input,scaling the operation rates beyond 10 GHz,and ensuring the effective extraction of functional configuration simultaneously.We propose an optical feature extraction engine(OFE^(2)),which is composed of a diffraction operator and a data preparation module,powering high-speed feature extraction for both image and temporal series tasks.This OFE^(2)can achieve a core latency of less than 250.5 ps;in addition,it can reach a throughput of 250 GOPS and an efficiency of 2.06 TOPS/W.Supported by the OFE^(2),a novel feature extraction paradigm is emerging,enabling high-speed,low-latency service access for applications in scene recognition,medical assistance,and digital finance. 展开更多
关键词 high-speed optical computing optical feature extraction diffraction operator
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Temperature-dependent deformation behavior of dual-phase medium-entropy alloy:In-situ neutron diffraction study
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作者 Gang Hee Gu Sang Guk Jeong +8 位作者 Yoon-Uk Heo Hyojeong Ha Soung Yeoul Ahn Ji Yeong Lee Jungwan Lee Stefanus Harjo Wu Gong Jungwook Cho Hyoung Seop Kim 《Journal of Materials Science & Technology》 2025年第20期308-324,共17页
Face-centered cubic(FCC)equi-atomic multi-principal element alloys(MPEAs)exhibit excellent mechan-ical properties over a broad temperature range from cryogenic temperatures(CTs)to room temperature(RT).Specifically,whi... Face-centered cubic(FCC)equi-atomic multi-principal element alloys(MPEAs)exhibit excellent mechan-ical properties over a broad temperature range from cryogenic temperatures(CTs)to room temperature(RT).Specifically,while the deformation mechanism is dominated solely by dislocation slip at RT,the re-duction in stacking fault energy(SFE)at CTs leads to enhanced strain hardening with deformation twin-ning.This study employs in-situ neutron diffraction to reveal the temperature-dependent deformation be-havior of the FCC/body-centered cubic(BCC)dual-phase(DP)Al7(CoNiV)93 medium-entropy alloy(MEA),which possesses a matrix exhibiting deformation behavior analogous to that of representative equi-atomic MPEAs.Alongside the increased lattice friction stress associated with reduced temperature as a thermal component,deformation twinning at liquid nitrogen temperature(LNT)facilitates dislocation activity in the FCC matrix,leading to additional strain hardening induced by the dynamic Hall-Petch effect.This would give the appearance that the improved strengthening/hardening behaviors at LNT,compared to RT,are primarily attributable to the FCC phase.In contrast,the BCC precipitates are governed solely by dislocation slip for plastic deformation at both 77 K and 298 K,exhibiting a similar trend in dislocation density evolution.Nevertheless,empirical and quantitative findings indicate that the intrinsically high Peierls-Nabarro barriers in the BCC precipitates exhibit pronounced temperature-dependent lattice fric-tion stress,suggesting that the BCC precipitates play a more significant role in the temperature-dependent strengthening/hardening behaviors for the DP-MEA.This study provides a comprehensive understanding of deformation behavior by thoroughly analyzing temperature-dependent strengthening/hardening mech-anisms across various DP-MPEA systems,offering valuable guidelines for future alloy design. 展开更多
关键词 In-situ neutron diffraction Medium-entropy alloy Dual-phase microstructure Deformation behavior Mechanical properties
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Solid solution dependence of the deformation behavior in Mg-xZn(x=0,1,2 wt%)alloys:In-situ neutron diffraction and crystal plasticity modeling
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作者 Huai Wang Soo Yeol Lee +3 位作者 You Sub Kim Huamiao Wang Wanchuck Woo Ke An 《Journal of Magnesium and Alloys》 2025年第2期823-838,共16页
The effects of solid solution on the deformation behavior of binary Mg-xZn(x=0,1,2 wt%)alloys featuring a designated texture that enables extension twinning under tension parallel to the basal pole in most grains,were... The effects of solid solution on the deformation behavior of binary Mg-xZn(x=0,1,2 wt%)alloys featuring a designated texture that enables extension twinning under tension parallel to the basal pole in most grains,were investigated using in-situ neutron diffraction and the EVPSC-TDT model.Neutron diffraction was used to quantitatively track grain-level lattice strains and diffraction intensity changes(related to mechanical twinning)in differently oriented grains of each alloy during cyclic tensile/compressive loadings.These measurements were accurately captured by the model.The stress-strain curves of Mg-1 wt%Zn and Mg-2 wt%Zn alloys show as-expected solid solution strengthening from the addition of Zn compared to pure Mg.The macroscopic yielding and hardening behaviors are explained by alternating slip and twinning modes as calculated by the model.The solid solution's influence on individual deformation modes,including basal〈a〉slip,prismatic〈a〉slip,and extension twinning,was then quantitatively assessed in terms of activity,yielding behavior,and hardening response by combining neutron diffraction results with crystal plasticity predictions.The Mg-1 wt%Zn alloy displays distinct yielding and hardening behavior due to solid solution softening of prismatic〈a〉slip.Additionally,the dependence of extension twinning,in terms of the twinning volume fraction,on Zn content exhibits opposite trends under tensile and compressive loadings. 展开更多
关键词 Magnesium alloy Deformation behavior Solid solution Crystal plasticity modeling Neutron diffraction
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Detecting dynamic structural evolution based on in-situ high-energy X-ray diffraction technology for sodium layered oxide cathodes
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作者 Yan-Jiang Li Shu-Lei Chou Yao Xiao 《Chinese Chemical Letters》 2025年第2期118-132,共15页
The detrimental phase transformations of sodium layered transition metal oxides(Na_(x)TMO_(2))during desodiation/sodiation seriously suppress their practical applications for sodium ion batteries(SIBs).Undoubtedly,com... The detrimental phase transformations of sodium layered transition metal oxides(Na_(x)TMO_(2))during desodiation/sodiation seriously suppress their practical applications for sodium ion batteries(SIBs).Undoubtedly,comprehensively investigating of the dynamic crystal structure evolutions of Na_(x)TMO_(2)associating with Na ions extraction/intercalation and then deeply understanding of the relationships between electrochemical performances and phase structures drawing support from advanced characterization techniques are indispensable.In-situ high-energy X-ray diffraction(HEXRD),a powerful technology to distinguish the crystal structure of electrode materials,has been widely used to identify the phase evolutions of Na_(x)TMO_(2)and then profoundly revealed the electrochemical reaction processes.In this review,we begin with the descriptions of synchrotron characterization techniques and then present the advantages of synchrotron X-ray diffraction(XRD)over conventional XRD in detail.The optimizations of structural stability and electrochemical properties for P2-,O3-,and P2/O3-type Na_(x)TMO_(2)cathodes through single/dual-site substitution,high-entropy design,phase composition regulation,and surface engineering are summarized.The dynamic crystal structure evolutions of Na_(x)TMO_(2)polytypes during Na ion extraction/intercalation as well as corresponding structural enhancement mechanisms characterizing by means of HEXRD are concluded.The interior relationships between structure/component of Na_(x)TMO_(2)polytypes and their electrochemical properties are discussed.Finally,we look forward the research directions and issues in the route to improve the electrochemical properties of Na_(x)TMO_(2)cathodes for SIBs in the future and the combined utilizations of multiple characterization techniques.This review will provide significant guidelines for rational designs of high-performance Na_(x)TMO_(2)cathodes. 展开更多
关键词 Layered oxides Sodium-ion batteries Phase evolutions In-situ high-energy X-ray diffraction ELECTROCHEMISTRY
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Wafer-level perfect conformal contact lithography at the diffraction limit enabled by dry transferable photoresist
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作者 Yu Zhou Lei Chen +3 位作者 Zhiwen Shu Fu Fan Yueqiang Hu Huigao Duan 《International Journal of Extreme Manufacturing》 2025年第6期426-434,共9页
Lithography is a Key enabling technique in modern micro/nano scale technology.Achieving the optimal trade-off between resolution,throughput,and cost remains a central focus in the ongoing development.However,current l... Lithography is a Key enabling technique in modern micro/nano scale technology.Achieving the optimal trade-off between resolution,throughput,and cost remains a central focus in the ongoing development.However,current lithographic techniques such as direct-write,projection,and extreme ultraviolet lithography achieve higher resolution at the expense of increased complexity in optical systems or the use of shorter-wavelength light sources,thus raising the overall cost of production.Here,we present a cost-effective and wafer-level perfect conformal contact lithography at the diffraction limit.By leveraging a transferable photoresist,the technique ensures optimal contact between the mask and photoresist with zero-gap,facilitating the transfer of patterns at the diffraction limit while maintaining high fidelity and uniformity across large wafers.This technique applies to a wide range of complex surfaces,including non-conductive glass surfaces,flexible substrates,and curved surfaces.The proposed technique expands the potential of contact photolithography for novel device architectures and practic al manufacturing processes. 展开更多
关键词 perfect conformal contact lithography diffraction limit conformal pattern transfer large-aperture metalens
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Depression of pyrrhotite superstructures in copper flotation:A synchrotron X-ray powder diffraction and DFT study
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作者 Alireza Rezvani Foad Raji +3 位作者 Rong Fan R.Kappes Zhiyong Gao Yongjun Peng 《International Journal of Mining Science and Technology》 2025年第8期1259-1270,共12页
Pyrrhotite naturally occurs in various superstructures including magnetic(4C)and non-magnetic(5C,6C)types,each with distinct physicochemical properties and flotation behaviors.Challenges in accurately identifying and ... Pyrrhotite naturally occurs in various superstructures including magnetic(4C)and non-magnetic(5C,6C)types,each with distinct physicochemical properties and flotation behaviors.Challenges in accurately identifying and quantifying these superstructures hinder the optimization of pyrrhotite depression in flotation processes.To address this critical issue,synchrotron X-ray powder diffraction(S-XRPD)with Rietveld refinement was employed to quantify the distribution of superstructures in the feed and flotation concentrates of a copper–gold ore.To elucidate the mechanisms influencing depression,density functional theory(DFT)calculations were conducted to explore the electronic structures and surface reactivity of the pyrrhotite superstructures toward the adsorption of water,oxygen and hydroxyl ions(OH-)as dominant species present in the flotation process.S-XRPD analysis revealed that flotation recovery rates of pyrrhotite followed the order of 4C<6C<5C.DFT calculations indicated that the Fe 3d and S 3p orbital band centers exhibited a similar trend relative to the Fermi level with 4C being the closest.The Fe3d band center suggested that the 4C structure possessed a more reactive surface toward the oxygen reduction reaction,promoting the formation of hydrophilic Fe-OH sites.The S 3p band center order also implied that xanthate on the non-magnetic 5C and 6C surfaces could oxidize to dixanthogen,increasing hydrophobicity and floatability,while 4C formed less hydrophobic metal-xanthate complexes.Adsorption energy and charge transfer analyses of water,hydroxyl ions and molecular oxygen further supported the high reactivity and hydrophilic nature of 4C pyrrhotite.The strong bonding with hydroxyl ions indicated enhanced surface passivation by hydrophilic Fe–OOH complexes,aligning with the experimentally observed flotation order(4C<6C<5C).These findings provide a compelling correlation between experimental flotation results and electronic structure calculations,delivering crucial insights for optimizing flotation processes and improving pyrrhotite depression.This breakthrough opens up new opportunities to enhance the efficiency of flotation processes in the mining industry. 展开更多
关键词 Pyrrhotite depression Synchrotron X-ray powder diffraction analysis Pyrrhotite superstructures DFT simulation Surface reactivity
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Quasi-in situ electron backscatter diffraction analysis of twinning±detwinning behavior in AZ31 magnesium-alloy rolled plates subjected to compression loading in different directions
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作者 Le Zhou Guiyuan Ren +5 位作者 Tianqi Huang Zhi Wang Feng Wang Ziqi Wei Pingli Mao Zheng Liu 《Journal of Magnesium and Alloys》 2025年第5期2358-2373,共16页
In this study,the twinning-detwinning behavior and slip behavior of rolled AZ31 magnesium-alloy plates during a three-step intermittent dynamic compression process along the rolling direction(RD)and normal direction(N... In this study,the twinning-detwinning behavior and slip behavior of rolled AZ31 magnesium-alloy plates during a three-step intermittent dynamic compression process along the rolling direction(RD)and normal direction(ND),are investigated via quasi-in situ electron backscatter diffraction,and the causes of the twinning and detwinning behavior are explained according to Schmid law,local strain coordination,and slip trajectories.It is found that the twins are first nucleated and grow at a compressive strain of 3%along the RD.In addition to the Schmid factor(SF),the strain coordination factor(m’)also influences the selection of the twin variants during the twinning process,resulting in the nucleation of twins with a low SF.During the second and third steps of the application of continuous compressive strains with magnitudes and directions of 3%RD+3%ND and 3%RD+3%ND+2.5%ND,detwinning occurs to different extents.The observation of the detwinning behavior reveals that the order in which multiple twins within the same grain undergo complete detwinning is related to Schmid law and the strain concentration,with a low SF and a high strain concentration promoting complete detwinning.The interaction between slip dislocations and twin boundaries in the deformed grains as well as the pinning of dislocations at the tips of the {1012} tensile twins with a special structure result in incomplete detwinning.Understanding the microstructural evolution and twinning behavior of magnesium alloys under different deformation geometries is important for the development of high-strength and high-toughness magnesium alloys. 展开更多
关键词 Quasi-in situ electron backscatter diffraction Twinning and detwinning Schmid law Strain coordination
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Diffraction separation by plane-wave prediction filtering 被引量:7
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作者 孔雪 王德营 +2 位作者 李振春 张瑞香 胡秋媛 《Applied Geophysics》 SCIE CSCD 2017年第3期399-405,461,共8页
Seismic data processing typically deals with seismic wave reflections and neglects wave diffraction that affect the resolution. As a general rule, wave diffractions are treated as noise in seismic data processing. How... Seismic data processing typically deals with seismic wave reflections and neglects wave diffraction that affect the resolution. As a general rule, wave diffractions are treated as noise in seismic data processing. However, wave diffractions generally originate from geological structures, such as fractures, karst caves, and faults. The wave diffraction energy is much weaker than that of the reflections. Therefore, even if wave diffractions can be traced back to their origin, their energy is masked by that of the reflections. Separating and imaging diffractions and reflections can improve the imaging accuracy of diffractive targets. Based on the geometrical differences between reflections and diffractions on the plane-wave record; that is, reflections are quasi-linear and diffractions are quasi-hyperbolic, we use plane-wave prediction fltering to separate the wave diffractions. First, we estimate the local slope of the seismic event using plane- wave destruction filtering and, then, we predict and extract the wave reflections based on the local slope. Thus, we obtain the diffracted wavefield by directly subtracting the reflected wavefield from the entire wavefield. Finally, we image the diffracted wavefield and obtain high-resolution diffractive target results. 2D SEG salt model data suggest that the plane-wave prediction filtering eliminates the phase reversal in the plane-wave destruction filtering and maintains the original wavefield phase, improving the accuracy of imaging heterogeneous objects. 展开更多
关键词 Plane wave prediction filter SEPARATION diffraction
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Evaluation on residual stresses of silicon-doped CVD diamond films using X-ray diffraction and Raman spectroscopy 被引量:14
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作者 陈苏琳 沈彬 +2 位作者 张建国 王亮 孙方宏 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第12期3021-3026,共6页
The effect of silicon doping on the residual stress of CVD diamond films is examined using both X-ray diffraction (XRD) analysis and Raman spectroscopy measurements. The examined Si-doped diamond films are deposited o... The effect of silicon doping on the residual stress of CVD diamond films is examined using both X-ray diffraction (XRD) analysis and Raman spectroscopy measurements. The examined Si-doped diamond films are deposited on WC-Co substrates in a home-made bias-enhanced HFCVD apparatus. Ethyl silicate (Si(OC2H5)4) is dissolved in acetone to obtain various Si/C mole ratio ranging from 0.1% to 1.4% in the reaction gas. Characterizations with SEM and XRD indicate increasing silicon concentration may result in grain size decreasing and diamond [110] texture becoming dominant. The residual stress values of as-deposited Si-doped diamond films are evaluated by both sin2ψ method, which measures the (220) diamond Bragg diffraction peaks using XRD, with ψ-values ranging from 0° to 45°, and Raman spectroscopy, which detects the diamond Raman peak shift from the natural diamond line at 1332 cm-1. The residual stress evolution on the silicon doping level estimated from the above two methods presents rather good agreements, exhibiting that all deposited Si-doped diamond films present compressive stress and the sample with Si/C mole ratio of 0.1% possesses the largest residual stress of ~1.75 GPa (Raman) or ~2.3 GPa (XRD). As the silicon doping level is up further, the residual stress reduces to a relative stable value around 1.3 GPa. 展开更多
关键词 silicon-doped diamond films silicon doping residual stress X-ray diffraction Raman spectroscopy
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钛酸铋钠高压下结构演化与相变行为
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作者 王润基 房雷鸣 +8 位作者 何瑞琦 冷浩杰 刘勇波 陈喜平 谢雷 冯秋 孙安苇 熊政伟 高志鹏 《物理学报》 北大核心 2026年第1期428-435,共8页
弛豫铁电体钛酸铋钠(Na_(0.5)Bi_(0.5)TiO_(3), NBT)具有优异的铁电性能,被广泛认为是极具应用前景的无铅铁电材料.深入阐明其在高压下的结构演化规律与相变机理,对于推动这类环境友好型铁电材料的应用至关重要.本研究结合原位高压中子... 弛豫铁电体钛酸铋钠(Na_(0.5)Bi_(0.5)TiO_(3), NBT)具有优异的铁电性能,被广泛认为是极具应用前景的无铅铁电材料.深入阐明其在高压下的结构演化规律与相变机理,对于推动这类环境友好型铁电材料的应用至关重要.本研究结合原位高压中子衍射实验与第一性原理计算,研究了NBT在高压下的结构演化规律.高压中子衍射实验结果表明, NBT的常压相R3c相和高压相Pnma相的共存压力区间为1.1—4.6 GPa,其体积模量分别为89.3 GPa和108.6 GPa.通过分析压力诱导的微观结构演变,本研究阐明了NBT高压相与常压相在微观结构特征上的差异及对体积模量的影响,建立了高压下NBT的微观结构响应与宏观物理性能的内在联系.获得的相关结论为无铅压电材料的高压性能调控提供了重要的实验依据与参考. 展开更多
关键词 钛酸铋钠 高压中子衍射 第一性原理计算 相变
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肉苁蓉粉对蛋糕品质及抗老化能力的影响
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作者 张雅茗 张珍 +4 位作者 赵圆圆 金丽娜 宋乐 杨浩浩 权佳纹 《食品与发酵工业》 北大核心 2026年第4期199-207,共9页
通过测定蛋糕比容比重、营养成分、质构特性、DPPH自由基清除能力、傅里叶变换红外光谱(Fourier transform infrared spectroscopy,FT-IR)、差示扫描量热仪(differential scanning calorimetry,DSC)记录曲线和X射线衍射(X-ray diffracti... 通过测定蛋糕比容比重、营养成分、质构特性、DPPH自由基清除能力、傅里叶变换红外光谱(Fourier transform infrared spectroscopy,FT-IR)、差示扫描量热仪(differential scanning calorimetry,DSC)记录曲线和X射线衍射(X-ray diffraction,XRD)图谱等指标,研究添加肉苁蓉粉对蛋糕品质以及延缓贮藏期蛋糕的老化能力的影响。结果表明,肉苁蓉蛋糕对比普通蛋糕硬度接近为(66.13±1.8)g,咀嚼性升高约7.75%,内聚性升高约0.58%。面糊比重略高于普通蛋糕为0.472 g/cm^(3),同时肉苁蓉蛋糕的DPPH自由基清除率高达43.52%,是普通蛋糕的2.69倍,在4℃条件下贮藏7 d后,2种蛋糕的硬度和咀嚼性均显著增加(P<0.05),且肉苁蓉蛋糕的硬度和咀嚼性更高,同时肉苁蓉蛋糕的焓值与结晶度较普通蛋糕分别降低约3.41%和7.95%,表明肉苁蓉粉的添加能有效提升蛋糕的品质并且延缓蛋糕的老化。 展开更多
关键词 肉苁蓉 老化 蛋糕 品质特性 X-射线衍射
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全介质聚焦超构表面天线设计与优化
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作者 付宗涛 杨帆 +6 位作者 王少娜 李凯 蒋悦 郭翠娟 牛萍娟 姚建铨 石嘉 《中国光学(中英文)》 北大核心 2026年第1期10-18,共9页
传统微波天线的空间分辨率受限于衍射极限,难以突破波长量级的约束,限制了其在高分辨率微波传感与检测中的应用。为克服这一问题,本文设计了一种全介质超衍射极限聚焦天线。首先,基于广义斯涅尔定律,利用非对称散射超构光栅阵列对天线... 传统微波天线的空间分辨率受限于衍射极限,难以突破波长量级的约束,限制了其在高分辨率微波传感与检测中的应用。为克服这一问题,本文设计了一种全介质超衍射极限聚焦天线。首先,基于广义斯涅尔定律,利用非对称散射超构光栅阵列对天线表面功能化,通过调控电磁波前实现亚波长尺度高效光束聚焦。然后,对超构光栅的几何结构设计进行优化,实现高调控效率。最后,分析超构天线所生成焦斑的电场强度分布以及尺寸。仿真结果表明:超构天线调控效率达到98.50%,衍射效率为72.56%,且焦斑最小尺寸小于0.73λ,焦深约为15.11λ。本文设计的超构天线兼具长焦深与高效率特性,其亚波长聚焦特性显著提升了空间分辨率,为微波成像及无损检测等领域的高精度传感检测提供了新的解决方案,具有潜在的应用价值。 展开更多
关键词 超构表面 天线 衍射极限 长焦深
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基于稀疏匹配滤波的TomoSAR三维成像
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作者 刘慧 赵春萌 +3 位作者 陈鹏飞 王彦植 屈明昊 肖宁 《雷达学报(中英文)》 北大核心 2026年第1期64-79,共16页
层析SAR(TomoSAR)成像技术已经成为获取三维SAR点云的关键技术。然而,如果忽略斜距垂向的二次相位,可能会导致目标在高程方向的散焦问题,这是由于层析SAR成像中第三维也可能存在菲涅耳衍射所导致的。该文利用光学成像中的衍射原理解释了... 层析SAR(TomoSAR)成像技术已经成为获取三维SAR点云的关键技术。然而,如果忽略斜距垂向的二次相位,可能会导致目标在高程方向的散焦问题,这是由于层析SAR成像中第三维也可能存在菲涅耳衍射所导致的。该文利用光学成像中的衍射原理解释了SAR成像中的衍射问题同样在第三维存在,并提出采用稀疏匹配滤波方法对第三维进行聚焦。第三维稀疏匹配滤波的关键在于构建稀疏相位补偿因子,进而构建稀疏匹配滤波器。首先根据TomoSAR影像的空间几何基线,构建第三维归一化的稀疏频率;然后,结合波长、距离、孔径等参数,根据菲涅耳积分特性构建频域稀疏匹配滤波器;最后,使用频域稀疏滤波器对稀疏采样的SAR图像进行相位补偿,再利用经典的稀疏成像算法(如压缩感知、似然比检测方法等)进行高程即第三维目标检测。该文采用中国科学院空天信息创新研究院的机载SAR数据,运用该文构建的频域稀疏匹配滤波器对其进行实验,实验结果验证了该文所提的方法能够解决层析SAR在菲涅耳衍射情况下导致的散焦问题,从而改善散焦引起的目标位置和后向散射信息不准确的问题。 展开更多
关键词 SAR层析成像 稀疏匹配滤波 稀疏相位补偿 后向散射 菲涅耳衍射
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三电极静电透镜构型优化超快电子脉冲聚焦仿真
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作者 李梦超 郭勇 +4 位作者 丁宁 陈维 黄骏 倪维元 王兴权 《光学技术》 北大核心 2026年第1期123-128,共6页
采用有限元(PS)联合N-particle粒子仿真(GPT)对中国科学院物理研究所100 keV超快电子衍射装置进行三电极静电透镜(EL)聚焦仿真,通过研究不同构型静电透镜,提出三电极静电透镜设计建议。仿真显示,对于中间电极的中心孔,当初始脉冲半径0.... 采用有限元(PS)联合N-particle粒子仿真(GPT)对中国科学院物理研究所100 keV超快电子衍射装置进行三电极静电透镜(EL)聚焦仿真,通过研究不同构型静电透镜,提出三电极静电透镜设计建议。仿真显示,对于中间电极的中心孔,当初始脉冲半径0.1毫米时,缩小孔径可使电子脉冲聚焦至39微米及以下。厚度和孔径固定,孔其两侧边缘为椭圆倒角时,缩小平行轴B可使电子脉冲聚焦至49微米及以下;而圆形倒角缩小倒角半径可使电子脉冲聚焦至39微米。仿真发现,通常电极板厚度越薄,聚焦效果越好,然而孔边缘倒角半径1毫米时,存在最优厚度6毫米,此时电子脉冲可聚焦至38微米。电透镜的焦距与孔半径和孔深成正比,与椭圆倒角的平行轴B或圆形倒角的半径成正比。超快电子脉冲在电透镜下的聚焦行为与电子束流具有相似性。仿真结果对静电透镜在超快电子衍射(UED)中的应用具有促进作用,对超快电子脉冲光学、透射电子显微镜和扫描电子显微镜等领域也具有极强的实际应用价值。 展开更多
关键词 超快电子衍射技术(UED) 直流光阴极电子枪 粒子仿真 电场有限元仿真 电子光学
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