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11篇 您的检索式:作者名="Yanpeng Feng"
    题名 作者 年代 出处 被引量
1中国地理人的解决研究的概述和进步显示文摘增加的中国都市化和工业化在地理,建筑学,并且城市的计划的领域里推动了更大的注意到人的解决和人陆地的关系的学习。我们使用了 bibliometric 方法和统计软件在 16 本中国地理杂志在人的解决上考察 180 篇文章。我们发现中国地理人的解决研究被下列描绘:( 1 )大多数研究在在媒介的模式放大的宏规模,城市的解决区别和理想集中于人的解决扩展,估价指示物,为城市、农村的解决的模型,理论探索和单个因素的、人的解决和复杂、地理存活率的计划惯例,解决环境的全面评估,并且计划社区单位在微规模,社区解决;关于推进人的解决的社会文化的调查和警告。(2 ) 没有进步在综合并且集成方法系统被取得了。PSR 当模特儿, DPSIR 模型被用于指向机制,当标准解决评估系统被问询表调查由物理与经济的指示物组成时。在另一方面,基于 GIS 的空间聚类是最近的年里的一个经常的焦点。在瓷器都市化和工业化的上下文以内在人的解决和理论系统上开创研究将在中国城市和区域的可持续性上提供指导。下列五个方面要求更大的注意:(1 ) 关于人的解决的自然适用性研究,和人的解决的调查要求在城市的环境,相应估价指示物,系统,和进化有关生态地合适的解决反映不同要求的范围,并且居民的影响社会经济的属性。(2 ) 空间时间的评估和可持续性在各种各样的规模在城市、农村的人的解决上研究,集中于在象在城市之间的城市簇和比较那样的各种各样的规模的进化和空间区别,在城市和社区以内。(3 ) 为人的解决进化研究的理论和技术的开发包括察觉技术和方法,数据采矿测量,并且预报并且地区性、城市的人的解决进化进程,机制和模式的模拟。(4 ) 在为有效管理和开发集中于优化,模式,和政策的人的解决的控制上研究。(5 ) 估计人的解决系统服务值并且建立合适的人的解决系统,包括社会、经济、文化、生态的服务值。MA Renfeng WANG Tengfei ZHANG wenzhong YU Jianhui WANG Dai CHEN Li JIANG Yanpeng FENG Gequn 2016Journal of Geographical Sciences2016,26,8:6
2Clay nanosheet-mediated delivery of recombinant plasmids expressing artificial miRNAs via leaf spray to prevent infection by plant DNA viruses显示文摘Whitefly-transmitted begomoviruses are economically important plant pathogens that cause severe problems in many crop plants,such as tomato,papaya,cotton,and tobacco.Tomato yellow leaf curl virus(TYLCV)is a typical monopartite begomovirus that has been extensively studied,but methods that can efficiently control begomoviruses are still scarce.In this study,we combined artificial microRNA(amiRNA)-mediated silencing technology and clay nanosheetmediated delivery by spraying and developed a method for efficiently preventing TYLCV infection in tomato plants.We designed three amiRNAs that target different regions of TYLCV to silence virus-produced transcripts.Three plant expression vectors expressing pre-amiRNAs were constructed,and recombinant plasmid DNAs(pDNAs)were loaded onto nontoxic and degradable layered double hydroxide(LDH)clay nanosheets.LDH nanosheets containing multiple pDNAs were sprayed onto plant leaves.We found that the designed amiRNAs were significantly accumulated in leaves 7 days after spraying,while the pDNAs were sustainably detected for 35 days after the spray,suggesting that the LDH nanosheets released pDNAs in a sustained manner,protected pDNAs from degradation and efficiently delivered pDNAs into plant cells.Importantly,when the LDH nanosheets coated with pDNAs were sprayed onto plants infected by TYLCV,both the disease severity and TYLCV viral concentration in sprayed plants were significantly decreased during the 35 days,while the levels of H_(2)O_(2) were significantly increased in those plants.Taken together,these results indicate that LDH nanosheets loaded with pDNAs expressing amiRNAs can be a sustainable and promising tool for begomovirus control.Qili Liu Yanpeng Li Kedong Xu Dongxiao Li Haiyan Hu Feng Zhou Puwen Song Yongang Yu Qichao Wei Qian Liu Weipeng Wang Ruifang Bu Haili Sun Xiaohui Wang Jianjun Hao Honglian Li Chengwei Li 2020Horticulture Research2020,7,1:1
3Non-Hermitian control of confined optical skyrmions in microcavities formed by photonic spin-orbit coupling显示文摘Optical skyrmions formed by photonic spin–orbit(SO)coupling are of significant interest in high-dimensional optical information processing.We report the formation mechanism and non-Hermitian properties of skyrmionlike states in a circular confinement potential with photonic SO coupling,which is preferably realized in a concave-planar microcavity system.We show that the effective photonic gauge field leads to two split manifolds of degenerate skyrmions whose spin textures can be controlled via the non-Hermitian properties by introducing circularly polarized gain and loss,exhibiting dramatically discrepant evolutions at the two sides of the exceptional point(EP).Furthermore,the lifetime degeneracy can be lifted by spatially inhomogeneous pumping according to the non-Hermitian mechanism,enabling the possibility for the skyrmion laser.By introducing shape asymmetry of the confinement potential,a double EP evolution can be achieved,which allows non-Hermitian control of the SO coupled states with higher degrees of freedom.These results open the way for the non-Hermitian control of photonic spin in confined systems,which would be of great significance for the fundamentals of advanced optical information processing.XIAOXUAN LUO YIN CAI XIN YUE WEI LIN JINGPING ZHU YANPENG ZHANG FENG LI 2023Photonics Research2023,11,4:1
4Mass Transfer, Gas Holdup, and Kinetic Models of Batch and Continuous Fermentation in a Novel Rectangular Dynamic Membrane Airlift Bioreactor显示文摘Compared with conventional cylinder airlift bioreactors(CCABs)that produce coarse bubbles,a novel rectangular dynamic membrane airlift bioreactor(RDMAB)developed in our lab produces fine bubbles to enhance the volumetric oxygen mass transfer coefficient(k_(L)a)and gas holdup,as well as improve the bioprocess in a bioreactor.In this study,we compared mass transfer,gas holdup,and batch and con-tinuous fermentation for RNA production in CCAB and RDMAB.In addition,unstructured kinetic models for microbial growth,substrate utilization,and RNA formation were established.In batch fermentation,biomass,RNA yield,and substrate utilization in the RDMAB were higher than those in the CCAB,which indicates that dynamic membrane aeration produced a high k_(L)a by fine bubbles;a higher k_(L)a is more bene-ficial to aerobic fermentation.The starting time of continuous fermentation in the RDMAB was 20 h ear-lier than that in the CCAB,which greatly improved the biological process.During continuous fermentation,maintaining the same dissolved oxygen level and a constant dilution rate,the biomass accumulation and RNA concentration in the RDMAB were 9.71% and 11.15% higher than those in the CCAB,respectively.Finally,the dilution rate of RDMAB was 16.7% higher than that of CCAB during con-tinuous fermentation while maintaining the same air aeration.In summary,RDMAB is more suitable for continuous fermentation processes.Developing new aeration and structural geometry in airlift bioreac-tors to enhance k_(L)a and gas holdup is becoming increasingly important to improve bioprocesses in a bioreactor.Ganlu Li Kequan Chen Yanpeng Wei Jinlei Zeng Yue Yang Feng He Hui Li Pingkai Ouyang 2022Engineering2022,8,6:1
5Superior third-order nonlinearity in inorganic fullerene-like WS_(2) nanoparticles显示文摘Two-dimensional(2D)transition metal dichalcogenides(TMDs)attain increasing attention due to their exceptional nonlinear optical efficiencies,which hold promising potential for on-chip photonics and advanced optoelectronic applications.Planar TMDs have been proven to support orders-higher third-order nonlinear coefficients in comparison with common nonlinear materials.Interestingly,stronger light–matter interaction could be motivated when curved features are introduced to 2D TMDs.Here,a type of inorganic fullerene-like WS_(2) nanoparticles is chemically synthesized using hard mesoporous silica.By using the spatial self-phase modulation(SSPM)method,the nonlinear refractive index n_(2) and third-order susceptibility χ^((3))are investigated in the visible range.It is found that n_(2)∼10^(−5) cm^(2)∕W andχ^((3))∼10^(−7) esu,two orders higher than the counterparts of planar WS_(2) structures.Our experimental findings provide a fresh thinking in designing nonlinear optical materials and endow TMDs with new potentials in photonic integration applications.TIANLUN LI RUI HAO LINGLING ZHANG JIANYONG MAO FENG LI YANPENG ZHANG JIXIANG FANG LEI ZHANG 2020Photonics Research2020,8,12:1
6Manipulating cavity photon dynamics by topologically curved space显示文摘Asymmetric microcavities supporting Whispering-gallery modes(WGMs)are of great significance for on-chip optical information processing.We establish asymmetric microcavities on topologically curved surfaces,where the geodesic light trajectories completely reconstruct the cavity mode features.The curvature-mediated photon-lifetime engineering enables the enhancement of the quality factors of periodic island modes by up to 200 times.Strong and weak coupling between modes of very different origins occurs when the space curvature brings them into resonance,leading to fine tailoring of the cavity photon energy and lifetime and the observation of non-Hermitian exceptional point(EP).At large space curvatures,the role of the WGMs is replaced by high-Q periodic modes protected by the high stability of island-like light trajectory.Our work demonstrates interesting physical mechanisms at the crosspoint of optical chaotic dynamics,non-Hermitian physics,and geodesic optical devices,and would initiate the novel area of geodesic microcavity photonics.Yongsheng Wang Yuhao Ren Xiaoxuan Luo Bo Li Zaoyu Chen Zhenzhi Liu Fu Liu Yin Cai Yanpeng Zhang Jin Liu Feng Li 2022Light(Science & Applications)2022,11,11:1
7Optically induced atomic lattice with tunable near-field and far-field diffraction patterns显示文摘Conventional periodic structures usually have nontunable refractive indices and thus lead to immutable photonic bandgaps. A periodic structure created in an ultracold atoms ensemble by externally controlled light can overcome this disadvantage and enable lots of promising applications. Here, two novel types of optically induced square lattices, i.e., the amplitude and phase lattices, are proposed in an ultracold atoms ensemble by interfering four ordinary plane waves under different parameter conditions. We demonstrate that in the far-field regime, the atomic amplitude lattice with high transmissivity behaves similarly to an ideal pure sinusoidal amplitude lattice, whereas the atomic phase lattices capable of producing phase excursion across a weak probe beam along with high transmissivity remains equally ideal. Moreover, we identify that the quality of Talbot imaging about a phase lattice is greatly improved when compared with an amplitude lattice. Such an atomic lattice could find applications in alloptical switching at the few photons level and paves the way for imaging ultracold atoms or molecules both in the near-field and in the far-field with a nondestructive and lensless approach.FENG WEN HUAPENG YE XUN ZHANG WEI WANG SHUOKE LI HONGXING WANG YANPENG ZHANG CHENG-WEI QIU 2017Photonics Research2017,5,6:0
8Experimental demonstration of optical Bloch oscillation in electromagnetically induced photonic lattices显示文摘The optical Bloch oscillation(OBO)is an optical-quantum analogy effect that is significant for light field manipulations,such as light beam localization,oscillation and tunneling.As an intra-band oscillation,OBO was important for optical investigations in photonic lattices and atomic vapors over an extended period of time.However,OBO in reconfigurable platforms is still an open topic,even though tunability is highly desired in developing modern photonic techniques.Here we theoretically establish and experimentally demonstrate OBO in an electromagnet-ically induced photonic lattice with a ramping refractive index,established in a coherently-prepared three-level 85 Rb atomic vapor under the electromagnetically induced transparency condition.This is achieved by interfering two coupling beams with Gaussian profiles and launching a probe beam that exhibits OBO within the resulting lattice.The induced reconfigurable photonic lattice possesses a transverse gradient,due to the innate edges of Gaussian beams,and sets a new stage for guiding the flow of light in periodic photonic environments.Our results should motivate better understanding of peculiar physical properties of an intriguing quantum-optical analogy in an atomic setting.Zhaoyang Zhang Shaohuan Ning Hua Zhong Milivoj RBelić Yiqi Zhang Yuan Feng Shun Liang Yanpeng Zhang Min Xiao 2022Fundamental Research2022,2,3:0
9Imaging lattice switching with Talbot effect in reconfigurable non-Hermitian photonic graphene显示文摘By taking advantage of the optical induction method, a non-Hermitian photonic graphene lattice is efficiently established inside an atomic vapor cell under the condition of electromagnetically induced transparency. This non-Hermitian structure is accomplished by simultaneously modulating both the real and imaginary components of the refractive index into honeycomb profiles. The transmitted probe field can either exhibit a hexagonal or honeycomb intensity profile when the degree of non-Hermiticity is effectively controlled by the ratio between imaginary and real indices. The experimental realization of such an instantaneously tunable complex honeycomb potential sets a new platform for future experimental exploration of non-Hermitian topological photonics. Also,we demonstrate the Talbot effect of the transmitted probe patterns. Such a self-imaging effect based on a non-Hermitian structure provides a promising route to potentially improve the related applications, such as an all-optical-controllable Talbot–Lau interferometer.Zhaoyang Zhang Yuan Feng Shaohuan Ning G.Malpuech D.D.Solnyshkov Zhongfeng Xu Yanpeng Zhang Min Xiao 2022Photonics Research2022,10,4:0
10Effect of Retained Austenite on Corrosion Behavior of Ultrafine Bainitic Steel in Marine Environment显示文摘In this study,the impact of retained austenite on corrosion initiation,propagation,and resistance of ultrafine bainitic steels in marine environments based on the one-step and two-step bainitic isothermal transformation was investigated using a combination of theoretical calculations and experimental methods.According to the results,the microstructure of ultrafine bainitic steels was composed of parallel arranged bainite ferrite(BF)and retained austenite(RA).The fraction of the block RA was significantly reduced,whereas the amount of the film RA increased through the two-step bainitic transformation.In the initial stage of corrosion,micro-galvanic effects occurred between the multiphases due to the difference in nobility,leading to the selective dissolution of BF sheaves,which is adjacent to the block RA in the one-step bainitic steel.However,uniformly distributed film RA in the two-step bainitic steel acted as a barrier against corrosion propagation.The electrochemical measurements and neutral salt spray tests revealed a relatively lower corrosion rate for the two-step bainitic steel,indicating a higher corrosion resistance than the one-step bainitic steel.The corrosion products layer mainly consisted ofα-FeOOH,γ-FeOOH,and Fe_(3)O_(4),which were stable and favorable for the formation of a protective rust layer.Xian Zhang Li Gong Yanpeng Feng Zhihui Wang Miao Yang Lin Cheng Jing Liu Kaiming Wu 2023Acta Metallurgica Sinica(English Letters)2023,36,5:0
11Interactions of Microplastics and Methane Seepage in the Deep-Sea Environment显示文摘Microplastics(MPs)are important exempla of the Anthropocene and are exerting an increasing impact on Earth’s carbon cycle.The huge imbalance between the MPs floating on the marine surface and those that are estimated to have been introduced into the ocean necessitates a detailed assessment of marine MP sinks.Here,we demonstrate that cold seep sediments,which are characterized by methane fluid seepage and a chemosynthetic ecosystem,effectively capture and accommodate small-scale(<100μm)MPs,with 16 types of MPs being detected.The abundance of MPs in the surface of the sediment is higher in methane-seepage locations than in non-seepage areas.Methane seepage is beneficial to the accumulation,fragmentation,increased diversity,and aging of MPs.In turn,the rough surfaces of MPs contribute to the sequestration of the electron acceptor ferric oxide,which is associated with the anaerobic oxidation of methane(AOM).The efficiency of the AOM determines whether the seeping methane(which has a greenhouse effect 83 times greater than that of CO_(2)over a 20-year period)can enter the atmosphere,which is important to the global methane cycle,since the deep-sea environment is regarded as the largest methane reservoir associated with natural gas hydrates.Jing-Chun Feng Zhifeng Yang Wenliang Zhou Xingwei Feng Fuwen Wei Bo Li Chuanxin Ma Si Zhang Linlin Xia Yanpeng Cai Yi Wang 2023Engineering2023,,10:0
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