期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
DSAS:A new macromolecular substructure solution program based on the modified phase-retrieval algorithm
1
作者 付兴科 谭振希 +2 位作者 耿直 刘茜 丁玮 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第5期125-132,共8页
Considering the pivotal role of single-wavelength anomalous diffraction(SAD) in macromolecular crystallography,our objective was to introduce DSAS,a novel program designed for efficient anomalous scattering substructu... Considering the pivotal role of single-wavelength anomalous diffraction(SAD) in macromolecular crystallography,our objective was to introduce DSAS,a novel program designed for efficient anomalous scattering substructure determination.DSAS stands out with its core components:a modified phase-retrieval algorithm and automated parameter tuning.The software boasts an intuitive graphical user interface(GUI),facilitating seamless input of essential data and real-time monitoring.Extensive testing on DSAS has involved diverse datasets,encompassing proteins,nucleic acids,and various anomalous scatters such as sulfur(S),selenium(Se),metals,and halogens.The results confirm DSAS’s exceptional performance in accurately determining heavy atom positions,making it a highly effective tool in the field. 展开更多
关键词 DSAS single-wavelength anomalous diffraction automated parameters settings phase-retrieval algorithm substructure determination
原文传递
Digital subcarrier multiplexing-enabled carrier-free phase-retrieval receiver
2
作者 Yunhe Ma Meng Xiang +7 位作者 Wenzhuo Cheng Ruitao Wu Peijian Zhou Gai Zhou Jilong Li Jianping Li Songnian Fu Yuwen Qin 《Advanced Photonics Nexus》 2023年第4期58-68,共11页
The carrier-free phase-retrieval(CF-PR)receiver can reconstruct the optical field information only from two de-correlated intensity measurements without the involvement of a continuous-wave optical carrier.Here,we pro... The carrier-free phase-retrieval(CF-PR)receiver can reconstruct the optical field information only from two de-correlated intensity measurements without the involvement of a continuous-wave optical carrier.Here,we propose a digital subcarrier multiplexing(DSM)-enabled CF-PR receiver with hardware-efficient and modulation format-transparent merits.By numerically retrieving the optical field information of 56 GBaud DSM signals with QPSK/16QAM/32QAM modulation after 80-km standard single-mode fiber(SSMF)transmission,we identify that the DSM enabled CF-PR receiver is beneficial in reducing the implementation complexity of the CF-PR process,in comparison with the traditional single-carrier counterpart,because the lower symbol rate of each subcarrier is helpful in reducing the implementation complexity of multiple chromatic dispersion compensations and emulations during the PR iteration.Moreover,the DSM-enabled CF-PR receiver is verified to be robust toward various transmission imperfections,including transmitter-side laser linewidth and its wavelength drift,receiver-side time skew,and amplitude imbalance between two intensity tributaries.Finally,the superiority of the DSM-enabled CF-PR receiver is experimentally verified by recovering the optical field information of 25 GBaud 16QAM signals,after 40-km SSMF transmission for the first time.Thus,the DSM-enabled CF-PR receiver is promising for high-capacity photonic interconnection with direct detection. 展开更多
关键词 phase-retrieval optical communications direct detection digital subcarrier multiplexing
在线阅读 下载PDF
Single frame memory-effect based bispectral analysis for high-resolution imaging through scattering media
3
作者 Pan Zhang Yuanyuan Liu Qiwen Zhan 《Chinese Optics Letters》 2025年第3期38-44,共7页
Imaging through scattering media remains a formidable challenge in optical imaging.Exploiting the memory effect presents new opportunities for non-invasive imaging through the scattering medium by leveraging speckle c... Imaging through scattering media remains a formidable challenge in optical imaging.Exploiting the memory effect presents new opportunities for non-invasive imaging through the scattering medium by leveraging speckle correlations.Traditional speckle correlation imaging often utilizes a random phase as the initial phase,leading to challenges such as convergence to incorrect local minima and the inability to resolve ambiguities in object orientation.Here,a novel method for high-quality reconstruction of single-shot scattering imaging is proposed.By employing the initial phase obtained from bispectral analysis in the subsequent phase retrieval algorithm,the convergence and accuracy of the reconstruction process are notably improved.Furthermore,a robust search technique based on an image clarity evaluation function successfully determines the optimal reconstruction size.The study demonstrates that the proposed method can obtain high-quality reconstructed images compared with the existing scattering imaging approaches.This innovative approach to non-invasive single-shot imaging through strongly scattering media shows potential for applications in scenarios involving moving objects or dynamic scattering imaging scenes. 展开更多
关键词 speckle autocorrelation imaging technology bispectral analysis phase-retrieval algorithm image clarity evaluation function
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部