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| 1 | Large-area straight,regular periodic surface structures produced on fused silica by the interference of two femtosecond laser beams through cylindrical lens显示文摘Inhomogeneity and low efficiency are two important factors that limit the application of laser-induced periodic surface structures(LIPSSs),especially on glass surfaces.In this study,two-beam interference(TBI)of femtosecond lasers was used to produce large-area straight LIPSSs on fused silica using cylindrical lenses.Compared with those produced us-ing a single circular or cylindrical lens,the LIPSSs produced by TBI are much straighter and more regular.Depending on the laser fluence and scanning velocity,LIPSSs with grating-like or spaced LIPSSs are produced on the fused silica sur-face.Their structural colors are blue,green,and red,and only green and red,respectively.Grating-like LIPSS patterns oriented in different directions are obtained and exhibit bright and vivid colors,indicating potential applications in surface coloring and anti-counterfeiting logos. | Long Chen Kaiqiang Cao Yanli Li Jukun Liu Shian Zhang Donghai Feng Zhenrong Sun Tianqing Jia | 2021 | Opto-Electronic Advances2021,4,12: | 7 |
| 2 | Ci antagonizes Hippo signaling in the somatic cells of the ovary to drive germline stem cell differentiation显示文摘许多干细胞人口被他们的本地微型环境(壁龛) 紧调整,它包括 stromal 房间的不同类型。然而,很少对壁龛亚群并列地由决定干细胞命运的机制被知道。这里,我们识别那 Yki,关键河马小径部件,为护卫房间(EC ) 是必要的在在果蝇卵巢支持 germline 区别的功能。我们发现那个刺猬(Hh ) 发信号首先从帽子房间发出,支持 EC 的功能肘脉 interruptus (Ci ) ,表明受动器的 Hh,禁止河马 kinase 的行为串联活动。机械学地,我们发现 Ci 竞争地与 Hpo 交往并且损害表明复杂形成的 Hpo-Wts,从而支持的 Yki 原子本地化。Ci 的行动保证发信号在 EC 反对 Sd/Tgi/Vg-mediated 缺省压抑的有效 Yki。这研究揭开解释壁龛房间的亚群怎么协调经由表明串音的 Hh 河马决定干细胞命运的机制,并且提高我们发信号的 oncogenic Yki/YAP 的机械学的规定的理解。 | Chaoyi Li Lijuan Kan Yan Chen Xiudeng Zheng Weini Li Wenxin Zhang Lei Cao Xiaohui Lin Shanming Ji Shoujun Huang Guoqiang Zhang Xiaohui Liu Yi Tao Shian Wu Dahua Chen | 2015 | Cell Research2015,25,10: | 5 |
| 3 | Single-shot compressed ultrafast photography: a review显示文摘Compressed ultrafast photography(CUP)is a burgeoning single-shot computational imaging technique that provides an imaging speed as high as 10 trillion frames per second and a sequence depth of up to a few hundred frames.This technique synergizes compressed sensing and the streak camera technique to capture nonrepeatable ultrafast transient events with a single shot.With recent unprecedented technical developments and extensions of this methodology,it has been widely used in ultrafast optical imaging and metrology,ultrafast electron diffraction and microscopy,and information security protection.We review the basic principles of CUP,its recent advances in data acquisition and image reconstruction,its fusions with other modalities,and its unique applications in multiple research fields. | Dalong Qi Shian Zhang Chengshuai Yang Yilin He Fengyan Cao Jiali Yao Pengpeng Ding Liang Gao Tianqing Jia Jinyang Liang Zhenrong Sun Lihong V.Wange | 2020 | Advanced Photonics2020,2,1: | 5 |
| 4 | Valence state manipulation of Sm3+ ions via a phase-shaped femtosecond laser field显示文摘The ability to manipulate the valence state conversion of rare-earth ions is crucial for their applications in color displays, optoelectronic devices, laser sources, and optical memory. The conventional femtosecond laser pulse has been shown to be a well-established tool for realizing the valence state conversion of rare-earth ions, although the valence state conversion efficiency is relatively low. Here, we first propose a femtosecond laser pulse shaping technique for improving the valence state conversion efficiency of rare-earth ions. Our experimental results demonstrate that the photoreduction efficiency from Sm^(3+) to Sm^(2+) in Sm^(3+)-doped sodium aluminoborate glass using a π phase step modulation can be comparable to that using a transform-limited femtosecond laser field, while the peak laser intensity is decreased by about 63%, which is very beneficial for improving the valence state conversion efficiency under the laser-induced damage threshold of the glass sample. Furthermore, we also theoretically develop a(2 + 1)resonance-mediated three-photon absorption model to explain the modulation of the photoreduction efficiency from Sm^(3+)to Sm^(2+)under the π-shaped femtosecond laser field. | YE ZHENG YUNHUA YAO LIANZHONG DENG WENJING CHENG JIANPING LI TIANQING JIA JIANRONG QIU ZHENRONG SUN SHIAN ZHANG | 2018 | Photonics Research2018,6,2: | 4 |
| 5 | Extremely regular periodic surface structures in a large area efficiently induced on silicon by temporally shaped femtosecond laser显示文摘Femtosecond laser-induced periodic surface structures(LIPSS) have several applications in surface structuring and functionalization. Three major challenges exist in the fabrication of regular and uniform LIPSS: enhancing the periodic energy deposition, reducing the residual heat, and avoiding the deposited debris. Herein, we fabricate an extremely regular low-spatial-frequency LIPSS(LSFL) on a silicon surface by a temporally shaped femtosecond laser. Based on a 4 f configuration zero-dispersion pulse shaping system, a Fourier transform limit(FTL) pulse is shaped into a pulse train with varying intervals in the range of 0.25–16.2 ps using periodic π-phase step modulation. Under the irradiation of the shaped pulse with an interval of 16.2 ps, extremely regular LSFLs are efficiently fabricated on silicon. The scan velocity for fabricating regular LSFL is 2.3 times faster, while the LSFL depth is 2 times deeper, and the diffraction efficiency is 3 times higher than those of LSFL using the FTL pulse.The formation mechanisms of regular LSFL have been studied experimentally and theoretically. The results show that the temporally shaped pulse enhances the excitation of surface plasmon polaritons and the periodic energy deposition while reducing the residual thermal effects and avoiding the deposition of the ejected debris, eventually resulting in regular and deeper LSFL on the silicon surface. | YUCHAN ZHANG QILIN JIANG KAIQIANG CAO TIANQI CHEN KE CHENG SHIAN ZHANG DONGHAI FENG TIANQING JIA ZHENRONG SUN JIANRONG QIU | 2021 | Photonics Research2021,9,5: | 4 |
| 6 | Femtosecond laser-induced periodic structures:mechanisms, techniques, and applications显示文摘Over the past two decades,femtosecond laser-induced periodic structures(femtosecond-LIPSs)have become ubiquitous in a variety of materials,including metals,semiconductors,dielectrics,and polymers.Femtosecond-LIPSs have become a useful laser processing method,with broad prospects in adjusting material properties such as structural color,data storage,light absorption,and luminescence.This review discusses the formation mechanism of LIPSs,specifically the LIPS formation processes based on the pump-probe imaging method.The pulse shaping of a femtosecond laser in terms of the time/frequency,polarization,and spatial distribution is an efficient method for fabricating high-quality LIPSs.Various LIPS applications are also briefly introduced.The last part of this paper discusses the LIPS formation mechanism,as well as the high-efficiency and high-quality processing of LIPSs using shaped ultrafast lasers and their applications. | Yuchan Zhang Qilin Jiang Mingquan Long Ruozhong Han Kaiqiang Cao Shian Zhang Donghai Feng Tianqing Jia Zhenrong Sun Jianrong Qiu Hongxing Xu | 2022 | Opto-Electronic Science2022,1,6: | 3 |
| 7 | Single-shot spectral-volumetric compressed ultrafast photography显示文摘In ultrafast optical imaging,it is critical to obtain the spatial structure,temporal evolution,and spectral composition of the object with snapshots in order to better observe and understand unrepeatable or irreversible dynamic scenes.However,so far,there are no ultrafast optical imaging techniques that can simultaneously capture the spatial–temporal–spectral five-dimensional(5D)information of dynamic scenes.To break the limitation of the existing techniques in imaging dimensions,we develop a spectral-volumetric compressed ultrafast photography(SV-CUP)technique.In our SV-CUP,the spatial resolutions in the x,y and z directions are,respectively,0.39,0.35,and 3 mm with an 8.8 mm×6.3 mm field of view,the temporal frame interval is 2 ps,and the spectral frame interval is 1.72 nm.To demonstrate the excellent performance of our SV-CUP in spatial–temporal–spectral 5D imaging,we successfully measure the spectrally resolved photoluminescent dynamics of a 3D mannequin coated with CdSe quantum dots.Our SV-CUP brings unprecedented detection capabilities to dynamic scenes,which has important application prospects in fundamental research and applied science. | Pengpeng Ding Yunhua Yao Dalong Qi Chengshuai Yang Fengyan Cao Yilin He Jiali Yao Chengzhi Jin Zhengqi Huang Li Deng Lianzhong Deng Tianqing Jia Jinyang Liang Zhenrong Sun Shian Zhang | 2021 | Advanced Photonics2021,3,4: | 3 |
| 8 | High-fidelity image reconstruction for compressed ultrafast photography via an augmented-Lagrangian and deep-learning hybrid algorithm显示文摘Compressed ultrafast photography(CUP) is the fastest single-shot passive ultrafast optical imaging technique,which has shown to be a powerful tool in recording self-luminous or non-repeatable ultrafast phenomena.However, the low fidelity of image reconstruction based on the conventional augmented-Lagrangian(AL)and two-step iterative shrinkage/thresholding(Tw IST) algorithms greatly prevents practical applications of CUP, especially for those ultrafast phenomena that need high spatial resolution. Here, we develop a novel AL and deep-learning(DL) hybrid(i.e., AL+DL) algorithm to realize high-fidelity image reconstruction for CUP. The AL+DL algorithm not only optimizes the sparse domain and relevant iteration parameters via learning the dataset but also simplifies the mathematical architecture, so it greatly improves the image reconstruction accuracy. Our theoretical simulation and experimental results validate the superior performance of the AL+DL algorithm in image fidelity over conventional AL and Tw IST algorithms, where the peak signalto-noise ratio and structural similarity index can be increased at least by 4 d B(9 d B) and 0.1(0.05) for a complex(simple) dynamic scene, respectively. This study can promote the applications of CUP in related fields, and it will also enable a new strategy for recovering high-dimensional signals from low-dimensional detection. | CHENGSHUAI YANG YUNHUA YAO CHENGZHI JIN DALONG QI FENGYAN CAO YILIN HE JIALI YAO PENGPENG DING LIANG GAO TIANQING JIA JINYANG LIANG ZHENRONG SUN SHIAN ZHANG | 2021 | Photonics Research2021,9,2: | 2 |
| 9 | Optimal feedback control of two-photon fluorescence in coumarin 515 based on genetic algorithm显示文摘 | Zhang Shian Sun Zhenrong Zhang Xiangyun | 2005 | Chem Phys Lett2005,415,46: | 1 |
| 10 | Coherent control of two-photon transitions in a two-level system with broadband absorption显示文摘 | Zhang Shian Zhang Hui Jia Tianqing | 2009 | Phys Rev A2009,80,04: | 1 |
| 11 | Exploring Femtosecond Laser Ablation by Snapshot Ultrafast Imaging and Molecular Dynamics Simulation显示文摘Femtosecond laser ablation(FLA)has been playing a prominent role in precision fabrication of material because of its circumvention of thermal effect and extremely high spatial resolution.Molecular dynamics modeling,as a powerful tool to study the mechanism of femtosecond laser ablation,still lacks the connection between its simulation results and experimental observations at present.Here we combine a single-shot chirped spectral mapping ultrafast photography(CSMUP)technique in experiment and a three-dimensional two-temperature model-based molecular dynamics(3D TTM-MD)method in theory to jointly investigate the FLA process of bulky gold.Our experimental and simulated results show quite high consistency in time-resolved morphologic dynamics.According to the highly accurate simulations,the FLA process of gold at the high laser fluence is dominated by the phase explosion,which shows drastic vaporized cluster eruption and pressure dynamics,while the FLA process at the low laser fluence mainly results from the photomechanical spallation,which shows moderate temperature and pressure dynamics.This study reveals the ultrafast dynamics of gold with different ablation schemes,which has a guiding significance for the applications of FLA on various kinds of materials. | Jiali Yao Dalong Qi Hongtao Liang Yilin He Yunhua Yao Tianqing Jia Yang Yang Zhenrong Sun Shian Zhang | 2022 | Ultrafast Science2022,,5: | 1 |
| 12 | 显示文摘 | Zheng Shian Zhang Yimin Ma Yunqing | 1996 | Journal of Iron and Steel Research1996,8,4: | 1 |
| 13 | Controlling multiphoton excited energy transfer from Tm^(3+) to Yb^(3+) ions by a phase-shaped femtosecond laser field显示文摘The ability to control the energy transfer in rare-earth ion-doped luminescent materials is very important for various related application areas such as color display, bio-labeling, and new light sources. Here, a phase-shaped femtosecond laser field is first proposed to control the transfer of multiphoton excited energy from Tm^(3+) to Yb^(3+) ions in co-doped glass ceramics. Tm^(3+) ions are first sensitized by femtosecond laser-induced multiphoton absorption, and then a highly efficient energy transfer occurs between the highly excited state Tm^(3+) sensitizers and the ground-state Yb^(3+) activators. The laser peak intensity and polarization dependences of the laser-induced luminescence intensities are shown to serve as proof of the multiphoton excited energy transfer pathway.The efficiency of the multiphoton excited energy transfer can be efficiently enhanced or completely suppressed by optimizing the spectral phase of the femtosecond laser with a feedback control strategy based on a genetic algorithm. A(1+2) resonance-mediated three-photon excitation model is presented to explain the experimental observations. This study provides a new way to induce and control the energy transfer in rare-earth ion-doped luminescent materials, and should have a positive contribution to the development of related applications. | YE ZHENG LIANZHONG DENG JIANPING LI TIANQING JIA JIANRONG QIU ZHENRONG SUN SHIAN ZHANG | 2019 | Photonics Research2019,7,4: | 1 |
| 14 | Periodic transparent nanowires in ITO film fabricated via femtosecond laser direct writing显示文摘This paper reports the fabrication of regular large-area laser-induced periodic surface structures(LIPSSs)in indium tin oxide(ITO)films via femtosecond laser direct writing focused by a cylindrical lens.The regular LIPSSs exhibited good properties as nanowires,with a resistivity almost equal to that of the initial ITO film.By changing the laser fluence,the nanowire resistances could be tuned from 15 to 73 kΩ/mm with a consistency of±10%.Furthermore,the average transmittance of the ITO films with regular LIPSSs in the range of 1200-2000 nm was improved from 21%to 60%.The regular LIPSS is promising for transparent electrodes of nano-optoelectronic devices-particularly in the near-infrared band. | Qilin Jiang Long Chen Jukun Liu Yuchan Zhang Shian Zhang Donghai Feng Tianqing Jia Peng Zhou Qian Wang Zhenrong Sun Hongxing Xu | 2023 | Opto-Electronic Science2023,2,1: | 0 |
| 15 | Accelerated hyperspectral imaging via temporal compressive sensing显示文摘Hyperspectral imaging(HSI),with the unique capability to discriminate various components by spatiospectral resolvability,is a powerful tool for observation and inspection,which has been applied in numerous fields,ranging from remote sensing,1 archaeology,2 food safety,3 and forensic medicine,4 to pharmaceutical research 5 and clinical diagnosis. | Shian Zhang | 2023 | Advanced Photonics2023,5,4: | 0 |
| 16 | Single-shot real-time compressed ultrahigh-speed imaging enabled by a snapshot-to-video autoencoder显示文摘Single-shot 2 D optical imaging of transient scenes is indispensable for numerous areas of study.Among existing techniques,compressed optical-streaking ultrahigh-speed photography(COSUP)uses a cost-efficient design to endow ultrahigh frame rates with off-the-shelf CCD and CMOS cameras.Thus far,COSUP’s application scope is limited by the long processing time and unstable image quality in existing analytical-modeling-based video reconstruction.To overcome these problems,we have developed a snapshot-to-video autoencoder(S2 V-AE)—which is a deep neural network that maps a compressively recorded 2 D image to a movie.The S2 V-AE preserves spatiotemporal coherence in reconstructed videos and presents a flexible structure to tolerate changes in input data.Implemented in compressed ultrahigh-speed imaging,the S2 V-AE enables the development of single-shot machine-learning assisted real-time(SMART)COSUP,which features a reconstruction time of 60 ms and a large sequence depth of 100 frames.SMART-COSUP is applied to wide-field multiple-particle tracking at 20,000 frames per second.As a universal computational framework,the S2 V-AE is readily adaptable to other modalities in high-dimensional compressed sensing.SMART-COSUP is also expected to find wide applications in applied and fundamental sciences. | XIANGLEI LIU JOÃO MONTEIRO ISABELA ALBUQUERQUE YINGMING LAI CHENG JIANG SHIAN ZHANG TIAGO H.FALK JINYANG LIANG | 2021 | Photonics Research2021,9,12: | 0 |
| 17 | Temporal compressive super-resolution microscopy at frame rate of 1200 frames per second and spatial resolution of 100 nm显示文摘Various super-resolution microscopy techniques have been presented to explore fine structures of biological specimens.However,the super-resolution capability is often achieved at the expense of reducing imaging speed by either point scanning or multiframe computation.The contradiction between spatial resolution and imaging speed seriously hampers the observation of high-speed dynamics of fine structures.To overcome this contradiction,here we propose and demonstrate a temporal compressive super-resolution microscopy(TCSRM)technique.This technique is to merge an enhanced temporal compressive microscopy and a deep-learning-based super-resolution image reconstruction,where the enhanced temporal compressive microscopy is utilized to improve the imaging speed,and the deep-learning-based super-resolution image reconstruction is used to realize the resolution enhancement.The high-speed super-resolution imaging ability of TCSRM with a frame rate of 1200 frames per second(fps)and spatial resolution of 100 nm is experimentally demonstrated by capturing the flowing fluorescent beads in microfluidic chip.Given the outstanding imaging performance with high-speed super-resolution,TCSRM provides a desired tool for the studies of high-speed dynamical behaviors in fine structures,especially in the biomedical field. | Yilin He Yunhua Yao Dalong Qi Yu He Zhengqi Huang Pengpeng Ding Chengzhi Jin Chonglei Zhang Lianzhong Deng Kebin Shi Zhenrong Sun Xiaocong Yuan Shian Zhang | 2023 | Advanced Photonics2023,5,2: | 0 |
| 18 | Corrosion Performance of Carbon Steel in CO_(2) Aqueous Environment Containing Silty Sand with Different Sizes显示文摘Corrosion performance of carbon steel in CO_2 aqueous environment containing silty sand with different sizes was investigated by immersion tests and electrochemical measurements.Silty sand could form an adsorption layer on steel surface in initial period,and the sand adsorption layer was turned into a mixture film of silty sand with corrosion product in last period.The adsorption layer in 325 mesh condition(large size)had the fewest pores for H_2CO_3 transport,exhibiting the highest cathodic current inhibition.In spite of little corrosion product,the sand adsorption film formed in 325 mesh condition induced the lowest corrosion rate.For 1000 and 5000 mesh silty sand,the sand adsorption layer had some pores for H_2CO_3 transport,leading to low cathodic current inhibition and much matrix dissolution.But the adsorption layer for5000 mesh silty sand(small size)had the largest special surface area to accelerate heterogeneous precipitation of corrosion product FeCO_3.Therefore,the mixture film in 5000 mesh condition was more compact,exhibiting stronger anodic inhibition and lower corrosion rate than those in 1000 mesh condition. | Songle Lu Wei Liu Shian Zhang Xiaolong Qi Xiaogang Li Xuemin Wang | 2017 | Acta Metallurgica Sinica(English Letters)2017,30,11: | 0 |
| 19 | The Superconducting Phases in Bi-Sr-Ca-Cu-O and Bi-Pb-Sr-Ca-Cu-O Superconductors at High Temperatures显示文摘The addition Of Pb enhances the hightemperature stability as well as theproportion of the high Tc phase in Bi-Sr-Ca-Cu-O superconductor.The sample A with nominal composi-tion of Bi1Sr1Ca1Cu2OY was synthesized bySolid state reaction.It was sintered in airat 1153K for 24h,followed by annealingat 773K for 24h and furnace-cooling.The sample B with a nominal compositionof Bi1Pb0.18Sr1Ca1Cu2OY was prepared bymixing PbO with the powder ofBi1Sr1Ca1Cu2OY which had been prefired at1113K for 24h,pressing,sintering | He Qing Yu Dingan Chang Shian Zhang Hong Sun Xu General Research Institute for Non-ferrous Metals,Beijing,100088,P.R.of China | 1989 | Rare Metals1989,9,1: | 0 |
| 20 | Editorial of special issue on ultrafast optics: fundamentals and applications显示文摘Ultrafast optics is an interdisciplinary research area as the interface between physics,optics,photonics,chemistry and engineering.Currently,the cutting-edge research interests in this area include,but are not limited to,the development of frontier ultrafast lasers and their applications in photophysics,quantum science,nonlinear optics,light–matter interaction,and ultrafast dynamics.This special issue is a collection of selective research articles focusing on ultrafast laser sources,ultrafast imaging technique,and ultrafast dynamics in molecules and solid-state materials.Ongoing with this special issue,Chinese Optics Letters aims to continuously offer an active platform for communications on the latest progress in the field of ultrafast optics. | Shian Zhang Olivier Faucher Shengye Jin | 2022 | Chinese Optics Letters2022,20,10: | 0 |