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Control of light-matter interactions in two-dimensional materials with nanoparticle-on-mirror structures 被引量:3
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作者 Shasha Li Yini Fang Jianfang Wang 《Opto-Electronic Science》 2024年第7期1-19,共19页
Light–matter interactions in two-dimensional(2D)materials have been the focus of research since the discovery of graphene.The light–matter interaction length in 2D materials is,however,much shorter than that in bulk... Light–matter interactions in two-dimensional(2D)materials have been the focus of research since the discovery of graphene.The light–matter interaction length in 2D materials is,however,much shorter than that in bulk materials owing to the atomic nature of 2D materials.Plasmonic nanostructures are usually integrated with 2D materials to enhance the light–matter interactions,offering great opportunities for both fundamental research and technological applications.Nanoparticle-on-mirror(NPo M)structures with extremely confined optical fields are highly desired in this aspect.In addition,2D materials provide a good platform for the study of plasmonic fields with subnanometer resolution and quantum plasmonics down to the characteristic length scale of a single atom.A focused and up-to-date review article is highly desired for a timely summary of the progress in this rapidly growing field and to encourage more research efforts in this direction.In this review,we will first introduce the basic concepts of plasmonic modes in NPo M structures.Interactions between plasmons and quasi-particles in 2D materials,e.g.,excitons and phonons,from weak to strong coupling and potential applications will then be described in detail.Related phenomena in subnanometer metallic gaps separated by 2D materials,such as quantum tunneling,will also be touched.We will finally discuss phenomena and physical processes that have not been understood clearly and provide an outlook for future research.We believe that the hybrid systems of2D materials and NPo M structures will be a promising research field in the future. 展开更多
关键词 light-matter interactions nanoparticle-on-mirror structures plasmonic enhancement two-dimensional materials
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Actively tuning anisotropic light-matter interaction in biaxial hyperbolic materialα-MoO_(3) using phase change material VO_(2) and graphene
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作者 周昆 胡杨 +2 位作者 吴必园 仲晓星 吴小虎 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第4期631-638,共8页
Anisotropic hyperbolic phonon polaritons(PhPs)in natural biaxial hyperbolic materialα-MoO_(3) has opened up new avenues for mid-infrared nanophotonics,while active tunability ofα-MoO_(3) PhPs is still an urgent prob... Anisotropic hyperbolic phonon polaritons(PhPs)in natural biaxial hyperbolic materialα-MoO_(3) has opened up new avenues for mid-infrared nanophotonics,while active tunability ofα-MoO_(3) PhPs is still an urgent problem necessarily to be solved.In this study,we present a theoretical demonstration of actively tuningα-MoO_(3) PhPs using phase change material VO_(2) and graphene.It is observed thatα-MoO_(3) PhPs are greatly dependent on the propagation plane angle of PhPs.The insulator-to-metal phase transition of VO_(2) has a significant effect on the hybridization PhPs of theα-MoO_(3)/VO_(2) structure and allows to obtain actively tunableα-MoO_(3) PhPs,which is especially obvious when the propagation plane angle of PhPs is 900.Moreover,when graphene surface plasmon sources are placed at the top or bottom ofα-MoO_(3) inα-MoO_(3)/VO_(2)structure,tunable coupled hyperbolic plasmon-phonon polaritons inside its Reststrahlen bands(RB s)and surface plasmonphonon polaritons outside its RBs can be achieved.In addition,the above-mentionedα-MoO_(3)-based structures also lead to actively tunable anisotropic spontaneous emission(SE)enhancement.This study may be beneficial for realization of active tunability of both PhPs and SE ofα-MoO_(3),and facilitate a deeper understanding of the mechanisms of anisotropic light-matter interaction inα-MoO_(3) using functional materials. 展开更多
关键词 light-matter interaction hyperbolic material phase change material GRAPHENE
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Probing the Wave Nature of Light-Matter Interaction
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作者 D.E.Boone C.H.Jackson +8 位作者 A.T.Swecker J.S.Hergenrather K.S.Wenger O.Kokhan B.Terzic I.Melnikov I.N.Ivanov E.C.Stevens G.Scarel 《World Journal of Condensed Matter Physics》 2018年第2期62-89,共28页
The wave-particle duality of light is a controversial topic in modern physics. In this context, this work highlights the ability of the wave-nature of light on its own to account for the conservation of energy in ligh... The wave-particle duality of light is a controversial topic in modern physics. In this context, this work highlights the ability of the wave-nature of light on its own to account for the conservation of energy in light-matter interaction. Two simple fundamental properties of light as wave are involved: its period and its power P. The power P depends only on the amplitude of the wave’s electric and magnetic fields (Poynting’s vector), and can easily be measured with a power sensor for visible and infrared lasers. The advantage of such a wave-based approach is that it unveils unexpected effects of light’s power P capable of explaining numerous results published in current scientific literature, of correlating phenomena otherwise considered as disjointed, and of making predictions on ways to employ the electromagnetic (EM) waves which so far are unexplored. In this framework, this work focuses on determining the magnitude of the time interval that, coupled with light’s power P, establishes the energy conserved in the exchange of energy between light and matter. To reach this goal, capacitors were excited with visible and IR lasers at variable average power P. As the result of combining experimental measurements and simulations based on the law of conservation of energy, it was found that the product of the period of the light by its power P fixes the magnitude of the energy conserved in light’s interaction with the capacitors. This finding highlights that the energy exchanged is defined in the time interval equal to the period of the light’s wave. The validity of the finding is shown to hold in light’s interaction with matter in general, e.g. in the photoelectric effect with x-rays, in the transfer of electrons between energy levels in semiconducting interfaces of field effect transistors, in the activation of photosynthetic reactions, and in the generation of action potentials in retinal ganglion cells to enable vision in vertebrates. Finally, the validity of the finding is investigated in the low frequency spectrum of the EM waves by exploring possible consequences in microwave technology, and in harvesting through capacitors the radio waves dispersed in the environment after being used in telecommunications as a source of usable electricity. 展开更多
关键词 INFRARED light-matter Interaction Conservation Of Energy Wave Energy Harvesting
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Quasi-flatband resonances and bound states in the continuum in coupled photonic topological defects for boosting light-matter interactions
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作者 Xinpeng Jiang Mingyu Luo +3 位作者 Zhaojian Zhang Jianwei You Zhihao Lan Junbo Yang 《Chinese Optics Letters》 2025年第10期213-220,共8页
In this Letter,we explore the interplay between topological defects and resonant phenomena in photonic crystal slabs,focusing on quasi-flatband resonances and bound states in the continuum(BICs).We identify anisotropi... In this Letter,we explore the interplay between topological defects and resonant phenomena in photonic crystal slabs,focusing on quasi-flatband resonances and bound states in the continuum(BICs).We identify anisotropic quasi-flatband resonances and isotropic quasi-flatband symmetry-protected BICs that exist in coupled topological defects characterized by nontrivial 2D Zak phases,originating from monopole,dipole,and quadrupole corner modes within second-order topological insulator systems.These topological defect modes,whose band structures are described using a tight-binding model,exhibit distinctive radiative behavior due to their symmetry and multipolar characteristics.Through far-field excitation analysis,we demonstrate the robustness and accessibility of these modes in terms of angular and spectral stability.Furthermore,we investigate potential applications of the quasi-flatband resonances in light-matter interactions,including optical forces,second-harmonic generation,and strong coupling,which exhibit robust performance under varying illumination angles.These findings offer new opportunities for precise control over light-matter interactions. 展开更多
关键词 topological photonics topological defect bound states in the continuum flatband light-matter interaction
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Plasma-induced enhancement of light-matter interaction on graphene-MoS_(2)heterostructure for sensitive SERS sensing
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作者 Jiayun Pei Fan Yang Haiyan Zhao 《Nano Research》 2025年第5期539-546,共8页
There has been a perpetual pursuit of improved sensitivity and reproducibility in surface-enhanced Raman scattering(SERS)devices.The two-dimensional material-based,metal-free SERS platform has emerged as a promising o... There has been a perpetual pursuit of improved sensitivity and reproducibility in surface-enhanced Raman scattering(SERS)devices.The two-dimensional material-based,metal-free SERS platform has emerged as a promising option due to the atomically flat surface and diverse surface electronic states.However,the inherently low light absorption efficiency and limited electronic state density lead to unsatisfactory sensitivity.Here,a metal-free,reusable,and plasma-treated graphene-MoS_(2)heterostructure as a SERS platform for high-sensitivity molecule detection is proposed.The heterostructure exhibits excellent SERS performance with a limit of detection as low as 10^(−9) M for probe molecules.The plasma treatment changes the electronic and structural properties of the heterostructures,increasing the charge transfer(CT),facilitated by the modified surface chemistry and light absorption rate,resulting in a more effective light-matter coupling and stronger signal enhancement.Furthermore,the structural disorders are created by the plasma irradiation,leading to the generation of local dipoles and hence enhancing the photoinduced CT.The results provide alternative avenues for developing low-cost and high-performance SERS devices. 展开更多
关键词 graphene-MoS_(2)heterostructure surface-enhanced Raman scattering oxygen plasma treatment light-matter interaction
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Chiral plasmonics and enhanced chiral light-matter interactions 被引量:7
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作者 Wei Du Xinglin Wen +2 位作者 Davy Gerard Cheng-Wei Qiu Qihua Xiong 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2020年第4期62-72,共11页
Chirality, which describes the broken mirror symmetry in geometric structures, exists macroscopically in our daily life as well as microscopically down to molecular levels. Correspondingly, chiral molecules interact d... Chirality, which describes the broken mirror symmetry in geometric structures, exists macroscopically in our daily life as well as microscopically down to molecular levels. Correspondingly, chiral molecules interact differently with circularly polarized light exhibiting opposite handedness(left-handed and right-handed). However, the interaction between chiral molecules and chiral light is very weak. In contrast, artificial chiral plasmonic structures can generate "super-chiral" plasmonic near-field, leading to enhanced chiral light-matter(or chiroptical) interactions. The "super-chiral" near-field presents different amplitude and phase under opposite handedness incidence, which can be utilized to engineer linear and nonlinear chiroptical interactions. Specifically,in the interaction between quantum emitters and chiral plasmonic structures, the chiral hot spots can favour the emission with a specific handedness. This article reviews the state-of-the-art research on the design, fabrication and chiroptical response of different chiral plasmonic nanostructures or metasurfaces. This review also discusses enhanced chiral light-matter interactions that are essential for applications like chirality sensing, chiral selective light emitting and harvesting. In the final part, the review ends with a perspective on future directions of chiral plasmonics. 展开更多
关键词 CHIRALITY CHIRAL PLASMONICS CHIRAL light-matter interactions sensing
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Enhancing light-matter interaction in 2D materials by optical micro/nano architectures for high-performance optoelectronic devices 被引量:5
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作者 Li Tao Zefeng Chen +3 位作者 Zhiyong Li Jiaqi Wang Xin Xu Jian-Bin Xu 《InfoMat》 SCIE CAS 2021年第1期36-60,共25页
Two-dimensional materials are a promising solution for next-generation electronic and optoelectronic devices due to their unique properties.Owing to the atomic thickness of 2D materials,the light-matter interaction le... Two-dimensional materials are a promising solution for next-generation electronic and optoelectronic devices due to their unique properties.Owing to the atomic thickness of 2D materials,the light-matter interaction length in 2D materials is much shorter than that in bulk materials,which limits the performance of optoelectronic devices composed of 2D materials.To improve the light-matter interactions,optical micro/nano architectures have been introduced into 2D material optoelectronic devices.In this review,we present a concise introduction and discussion of various strategies for the enhancement of lightmatter interaction in 2D materials,namely,the plasmonic effect,waveguide,optical cavity,and reflection architecture.We have outlined the current advances in high-performance 2D material optoelectronic devices(eg,photodetectors,electrooptic modulators,light-emitting diodes,and molecular sensors)assisted by these enhancement strategies.Finally,we have discussed the future challenges and opportunities of micro/nano photonic structure designs in 2D material devices. 展开更多
关键词 light-matter interaction micro/nano architecture 2d material PHOTODETECTOR Raman enhancement MODULATOR
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Monolayer tungsten disulfide in photonic environment:Angleresolved weak and strong light-matter coupling 被引量:2
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作者 Xuewen Zhang Lishu Wu +6 位作者 Xu Wang Silin He Hanwei Hu Guangchao Shi Xingwang Zhang Jingzhi Shang Ting Yu 《Nano Research》 SCIE EI CSCD 2022年第6期5619-5625,共7页
Light-matter interactions in two-dimensional transition metal dichalcogenides(TMDs)are sensitive to the surrounding dielectric environment.Depending on the interacting strength,weak and strong exciton–photon coupling... Light-matter interactions in two-dimensional transition metal dichalcogenides(TMDs)are sensitive to the surrounding dielectric environment.Depending on the interacting strength,weak and strong exciton–photon coupling effects can occur when the exciton energy is resonant with the one of photon.Here we report angle-resolved spectroscopic signatures of monolayer tungsten disulfide(1L-WS2)in weak and strong exciton–photon coupling environments.Inherent optical response of 1L-WS_(2)in the momentum space is uncovered by employing a dielectric mirror as substrate,where the energy dispersion is angleindependent while the amplitudes increase at high detection angles.When 1L-WS_(2)sits on top of a dielectric layer on silicon,the resonant trapped photon weakly couples with the exciton,in which the minimum of reflection dip shifts at both sides of the crossing angle while the emitted exciton energy remains unchanged.The unusual shift of reflection dip is attributed to the presence of Fano resonance under white-light illumination.By embedding 1L-WS_(2)into a dielectric microcavity,strong exciton–photon coupling results in the formation of lower and upper polariton branches with an appreciable Rabi splitting of 34 meV at room temperature,where the observed blueshift of the lower polariton branch is indicative of the enhanced polaritonpolariton scattering.Our findings highlight the effect of dielectric environment on angle-resolved optical response of exciton–photon interactions in a two-dimensional semiconductor,which is helpful to develop practical TMD-based architectures for photonic and polaritonic applications. 展开更多
关键词 light-matter coupling Fano resonance Rabi splitting EXCITON-POLARITON dielectric effect
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从凝聚态物理到凝聚态化学
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作者 贾然 王建 闫文付 《化学进展》 北大核心 2026年第1期1-22,共22页
自20世纪60—70年代凝聚态物理这一概念被广泛接受后,这一学科经历了飞速发展。凝聚态物理主要研究的是固态和液态物质的几何与电子结构,以及由此带来的声、光、电、磁、热等微观和宏观的物理现象。而化学学科发展至今,尤其在近20年,随... 自20世纪60—70年代凝聚态物理这一概念被广泛接受后,这一学科经历了飞速发展。凝聚态物理主要研究的是固态和液态物质的几何与电子结构,以及由此带来的声、光、电、磁、热等微观和宏观的物理现象。而化学学科发展至今,尤其在近20年,随着理论化学和化学表征手段的进步,研究人员开始逐渐意识到了化学反应并不仅仅是从反应物到产物这么简单的关系。反应体系的物质结构层次对化学反应的进程起到至关重要作用。人们逐渐开始重视化学反应的原位表征,并对揭示体系中不同层次的物质结构在反应条件下的动态变化进行探索。这些恰恰可以被看作是凝聚态化学研究的萌芽。物理与化学一直是相互交叉、相辅相成的两门自然科学。目前仍有很多凝聚态物理的新现象和新理论涌现出来。将这些新的物理现象和理论引入到化学研究当中是一个非常值得思考和探究问题。本文将对一些相对较晚出现的凝聚态物理概念(例如,表面等离激元极化子、拓扑绝缘体、准晶、局部微静电/磁场、光-物质相互作用、交变磁体等)及其在化学研究中的一些尝试进行简单介绍,旨在说明凝聚态物理研究前沿在化学研究中的应用前景,为推动传统化学研究进入凝聚态化学阶段提供一些思路,促进凝聚态化学这一学科的建设。 展开更多
关键词 凝聚态物理 凝聚态化学 表面等离激元 拓扑绝缘体 局部微环境 光-物质相互作用
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基于分数阶涡旋激光束的纳米粒子高精度控制
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作者 戴金宇 张笑河 《强激光与粒子束》 北大核心 2026年第2期148-155,共8页
提出了一种基于分数阶涡旋光束的纳米粒子三维操控方法。通过建立分数阶涡旋光束的矢量衍射模型,揭示了拓扑系数与光场相位奇异性之间的映射关系。数值模拟结果表明,分数阶涡旋光束的焦场可视为整数阶模式的相干叠加,且其权重分布呈现... 提出了一种基于分数阶涡旋光束的纳米粒子三维操控方法。通过建立分数阶涡旋光束的矢量衍射模型,揭示了拓扑系数与光场相位奇异性之间的映射关系。数值模拟结果表明,分数阶涡旋光束的焦场可视为整数阶模式的相干叠加,且其权重分布呈现显著的非对称特性。此外,还建立了基于分数阶涡旋光束捕获纳米粒子的光力模型。研究表明,通过调节分数阶涡旋光束的拓扑系数,可以实现对球形纳米粒子的精确操控。粒子在横向平面上的捕获位置与拓扑系数之间呈线性依赖关系。与传统的整数阶光束相比,该方法通过连续调节拓扑系数,实现了横向捕获位置的精确连续调控。理论计算与Langevin动力学模拟的结果进一步验证了该技术在三维空间内能够实现纳米粒子的多自由度协同操控。 展开更多
关键词 光与物质相互作用 光镊技术 光场调控 光力 光操控
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“从现象中推理”:重审牛顿光-色新理论建立过程
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作者 王大同 袁江洋 《自然辩证法通讯》 北大核心 2026年第1期72-81,共10页
牛顿光-色研究是在其粒子论物质理论背景下展开的,但是,牛顿采用归纳推理的形式从实验出发书写其“光-色新理论”,并非出于修辞学上的考虑,而是因为他始终拒绝笛卡尔式的从概念出发构造理论的做法。牛顿的关键实验有二,一是双三棱镜实验... 牛顿光-色研究是在其粒子论物质理论背景下展开的,但是,牛顿采用归纳推理的形式从实验出发书写其“光-色新理论”,并非出于修辞学上的考虑,而是因为他始终拒绝笛卡尔式的从概念出发构造理论的做法。牛顿的关键实验有二,一是双三棱镜实验,其作用是引导牛顿通过溯因推理直接猜测出日光的异质组成并引出其“光线”概念——这一概念对于牛顿新理论具有类似于理论实体的意义;另一是三棱镜-凸透镜实验,其作用在于检验与证明单色光线的不变性。牛顿“从现象中推理”的基点是从经验归纳得到的具有定律地位的“光的不变性”认识,最终牛顿在《光学》“疑问27”中终结了一切形式的光的修正理论,并在“疑问29”明确说出光线只能是物体。 展开更多
关键词 牛顿光-色新理论 关键实验 “从现象中推理” 光的不变性 物质理论
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排放烟尘浓度连续监测的在线校准装备研究
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作者 郑磊 《自动化仪表》 2026年第3期22-27,共6页
为了保障光散射烟尘浓度连续监测仪器的长时间、高精度稳定运行,研究了排放烟尘浓度原位在线校准装备。排除湿度影响和优化在线校准算法是开发在线校准装备的关键。通过研究湿度对烟尘浓度测量的干扰,设计了高效除湿机构。同时,剖析光... 为了保障光散射烟尘浓度连续监测仪器的长时间、高精度稳定运行,研究了排放烟尘浓度原位在线校准装备。排除湿度影响和优化在线校准算法是开发在线校准装备的关键。通过研究湿度对烟尘浓度测量的干扰,设计了高效除湿机构。同时,剖析光散射法与β射线法原理,基于最小均方理论,构建了适用于连续监测的在线校准算法。现场试验表明,所研制的校准装备除湿效果显著,能确保设备长时间稳定运行,测量误差仅为7.86%。建立的校准算法有效提升了连续监测仪器的精度,使最大监测误差控制在8.87%,相较于无校准算法的仪器误差减少了5.91%。该在线校准装备的开发,显著提高了烟尘浓度监测的整体精度与稳定性,为相关监测工作提供了有力支持。 展开更多
关键词 烟尘浓度 在线校准装备 光散射法 除湿机构 Β射线法 连续监测 校准算法 原位校准
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Tailoring Light–Matter Interactions in Overcoupled Resonator for Biomolecule Recognition and Detection
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作者 Dongxiao Li Hong Zhou +2 位作者 Zhihao Ren Cheng Xu Chengkuo Lee 《Nano-Micro Letters》 SCIE EI CAS 2025年第1期262-280,共19页
Plasmonic nanoantennas provide unique opportunities for precise control of light–matter coupling in surface-enhanced infrared absorption(SEIRA)spectroscopy,but most of the resonant systems realized so far suffer from... Plasmonic nanoantennas provide unique opportunities for precise control of light–matter coupling in surface-enhanced infrared absorption(SEIRA)spectroscopy,but most of the resonant systems realized so far suffer from the obstacles of low sensitivity,narrow bandwidth,and asymmetric Fano resonance perturbations.Here,we demonstrated an overcoupled resonator with a high plasmon-molecule coupling coefficient(μ)(OC-Hμresonator)by precisely controlling the radiation loss channel,the resonator-oscillator coupling channel,and the frequency detuning channel.We observed a strong dependence of the sensing performance on the coupling state,and demonstrated that OC-Hμresonator has excellent sensing properties of ultra-sensitive(7.25%nm^(−1)),ultra-broadband(3–10μm),and immune asymmetric Fano lineshapes.These characteristics represent a breakthrough in SEIRA technology and lay the foundation for specific recognition of biomolecules,trace detection,and protein secondary structure analysis using a single array(array size is 100×100μm^(2)).In addition,with the assistance of machine learning,mixture classification,concentration prediction and spectral reconstruction were achieved with the highest accuracy of 100%.Finally,we demonstrated the potential of OC-Hμresonator for SARS-CoV-2 detection.These findings will promote the wider application of SEIRA technology,while providing new ideas for other enhanced spectroscopy technologies,quantum photonics and studying light–matter interactions. 展开更多
关键词 Plasmonic nanoantennas light-matter interaction Surface-enhanced infrared absorption Overcoupled BIOSENSING
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棉花/花生间作条件下群体冠层温光水特征及器官干物质生产特性比较研究
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作者 金路路 徐敏 +1 位作者 王子胜 吴晓东 《作物杂志》 北大核心 2025年第5期177-183,共7页
为了解棉花/花生间作群体中冠层温光水特征、棉花器官干物质生产及产量、产值等方面的差异,设计4种种植模式进行研究,分别为单作棉花(T1)、棉花:花生=2:1(T2)、棉花:花生=2:2(T3)和单作花生(T4)。结果表明,间作处理20、40 cm冠层光照强... 为了解棉花/花生间作群体中冠层温光水特征、棉花器官干物质生产及产量、产值等方面的差异,设计4种种植模式进行研究,分别为单作棉花(T1)、棉花:花生=2:1(T2)、棉花:花生=2:2(T3)和单作花生(T4)。结果表明,间作处理20、40 cm冠层光照强度较单作处理高,各处理冠层温度差异不大,单作处理湿度相对较高。收获前各处理棉花营养器官和生殖器官鲜重和干重排序均为T3>T2>T1。间作棉花单株铃数和单铃重较单作高,达到显著水平;衣分和籽指略有增加,未达到显著水平。T4处理饱果数、单穴荚果重、出仁率、百果重和百仁重较高,且百果重较T2处理达显著水平;T2处理花生秕果数和侧枝数最多,较T4处理达到显著水平。T2和T3处理产值较T1处理分别提高3.69%和10.29%,较T4处理分别提高27.63%和35.74%。可见,间作模式可以提高群体中下部光照强度,降低群体内部湿度,提高棉花营养器官和生殖器官干物质质量,棉花:花生2:1和2:2间作模式均能提高单位面积产量和产值。 展开更多
关键词 棉花 花生 间作 温光水 干物质
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Solutions and quantum dynamics of the quantum Rabi model with A-square terms
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作者 Xiang-You Chen Tian Ye Qing-Hu Chen 《Communications in Theoretical Physics》 2025年第5期45-49,共5页
It is well known that the A-square term must be considered in both cavity and circuit quantum electrodynamics systems,because it arises in the derivation from the minimal coupling Hamiltonian at any finite coupling st... It is well known that the A-square term must be considered in both cavity and circuit quantum electrodynamics systems,because it arises in the derivation from the minimal coupling Hamiltonian at any finite coupling strength.In this paper,we study the quantum Rabi model with A-square terms using the Bogoliubov operator approach.After a unitary transformation,the A-square terms can be eliminated,resulting in a modified quantum Rabi model with renormalized parameters.A transcendental function responsible for the exact solution is then derived.The presence of the A-square terms is found to significantly alter the energy spectrum.The dynamics are also studied using the obtained exact wave function,which is sensitive to the strength of the A-square terms at strong coupling.We believe that these results could be observed in future light–matter interaction systems in the ultra-strong and deep strong coupling regimes. 展开更多
关键词 light-matter interaction quantum Rabi model A-square terms ultra-strong strong coupling dynamics
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光学微结构中与连续域束缚态相关的强耦合现象(特邀) 被引量:2
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作者 黄磊 任继铎 +4 位作者 王维清 丁传奇 孙思毅 胡孟冉 赖文勇 《光学学报(网络版)》 2025年第14期17-29,共13页
过去十年里,传统光学微腔与激子之间的强耦合现象已被广泛研究,并在量子计算与激光等领域展现出广阔的应用前景,但受限于较低的品质因子与较小的模式体积,传统的光学微腔难以实现强耦合激发。相比于传统光学微腔,连续域束缚态(BIC)是一... 过去十年里,传统光学微腔与激子之间的强耦合现象已被广泛研究,并在量子计算与激光等领域展现出广阔的应用前景,但受限于较低的品质因子与较小的模式体积,传统的光学微腔难以实现强耦合激发。相比于传统光学微腔,连续域束缚态(BIC)是一种存在于辐射连续域且无任何能量泄漏的特殊本征态。BIC因具有超高的品质因子与较强的光场束缚能力,为实现光与物质强相互作用提供了全新的思路。本文首先回顾了BIC的发展过程,并对其产生机制与分类进行简要介绍;然后,对BIC辅助的强耦合理论与特性进行讨论,并介绍利用BIC实现强耦合的相关研究;最后,对BIC的强耦合现象在激光领域的潜在应用与面临挑战进行总结与展望。 展开更多
关键词 连续域束缚态 光学微结构 超表面 等离激元 光与物质相互作用
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利用人工智能软件ChatGPT和DeepSeek作为第三方验证光速原理的分析推导过程 被引量:1
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作者 王忆锋 《云光技术》 2025年第1期31-58,共28页
在理论物理研究领域,第三方验证可以通过分析推理过程的逻辑性,发现潜在错误,确保推理的合理性,提高研究结论的可信度。开展第三方验证需要一定的资源投入,这些限制使得开展第三方验证并不容易。人工智能(AI)技术的发展降低了开展第三... 在理论物理研究领域,第三方验证可以通过分析推理过程的逻辑性,发现潜在错误,确保推理的合理性,提高研究结论的可信度。开展第三方验证需要一定的资源投入,这些限制使得开展第三方验证并不容易。人工智能(AI)技术的发展降低了开展第三方验证工作的门槛。AI可以在一定程度上充当第三方来开展验证工作,尤其是在逻辑推导的验证方面,可以AI来检查一个分析过程是否存在逻辑错误。宇宙空间中在只有一个物体的情况下,该物体的质量是宇宙总质量,该物体的速度是光速,该物体的温度趋近0 K,用数学语言描述就是宇宙总能量和宇宙总质量比值的平方根等于光速,这是作者提出的光速原理,也是宇宙空间中最简单的物理场景和物质的初始状态。作者利用AI软件ChatGPT和DeepSeek作为第三方,审查了光速原理推导过程的各个环节,对光速原理的推导过程进行了正向验证和反向验证,结果表明在相同的逻辑链下,ChatGPT和DeepSeek同样可以导出光速原理。 展开更多
关键词 人工智能 光速原理 物理场景 物质初始状态 正向验证 反向验证
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块体/多层过渡金属硫族化合物中光–物质强耦合相互作用研究进展
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作者 杜静 王卫 《光电工程》 北大核心 2025年第12期80-94,共15页
过渡金属硫族化物(Transition metal dichalcogenides, TMDCs)作为典型二维范德瓦尔斯材料,因独特能带结构与良好的光学性质而受到广泛关注。与单层体系相比,块体/多层TMDCs兼具高折射率与激子,在可见-近红外波段表现出强光–物质相互... 过渡金属硫族化物(Transition metal dichalcogenides, TMDCs)作为典型二维范德瓦尔斯材料,因独特能带结构与良好的光学性质而受到广泛关注。与单层体系相比,块体/多层TMDCs兼具高折射率与激子,在可见-近红外波段表现出强光–物质相互作用的显著优势。近年来,围绕TMDCs的强耦合研究迅速推进,已在米氏共振,法布里-珀罗腔,准束缚态等光学模式中实现与激子的强耦合。本文聚焦块体/多层TMDCs强耦合领域,系统梳理其最新研究进展,总结了不同光学腔体系(表面等离激元腔、法布里–珀罗腔及高折射率介质谐振腔/纳米天线)的研究,并对未来发展趋势进行了展望。 展开更多
关键词 过渡金属硫族化合物 光-物质相互作用 强耦合 激子极化激元
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不同光照条件下减穴稳苗配置对水稻茎鞘干物质积累转运特性的影响 被引量:1
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作者 刘钰婷 周星 +14 位作者 何辰延 李秋萍 艾小凤 袁玉洁 刘睿 杨景文 刘婷婷 王丽 程红 黄蓉 李奥运 胡文 胡忠 任万军 邓飞 《中国水稻科学》 北大核心 2025年第5期665-678,共14页
【目的】明确弱光胁迫下田间配置对茎鞘干物质积累转运特性的影响,为弱光稻区健康群体塑造技术的改良提供理论和实践依据。【方法】以宜香优2115为材料,于2021-2022年在四川省汉源县和温江区设置不同光照(自然光照和遮光50%)和田间配置... 【目的】明确弱光胁迫下田间配置对茎鞘干物质积累转运特性的影响,为弱光稻区健康群体塑造技术的改良提供理论和实践依据。【方法】以宜香优2115为材料,于2021-2022年在四川省汉源县和温江区设置不同光照(自然光照和遮光50%)和田间配置(常规密植和减穴稳苗)试验,研究了不同光照条件下田间配置对水稻节间和叶鞘干物质积累转运特性的影响。【结果】1)除2022年温江生态点外,弱光胁迫导致成熟期水稻各节间和叶鞘干物量均不同程度降低,节间和叶鞘总干物量分别显著降低22.68%~30.12%和6.45%~15.64%,但显著增加了节间和叶鞘总干物质转运量、转运率和贡献率。2)与常规密植相比,减穴稳苗可有效增加不同光照条件下各时期节间(除2022年弱光胁迫下温江生态点外)与叶鞘总干物量,促进弱光胁迫下节间和叶鞘干物质的转运再利用,使温江和汉源生态点成熟期单穗重分别增加1.51%~6.03%和5.70%~10.37%。3)不同光照条件下,产量品质与干物质积累转运特性相关性差异明显。弱光胁迫下,节间干物质转运量、转运率和贡献率与产量正相关,与垩白粒率和垩白度极显著负相关。【结论】弱光胁迫下,水稻通过增强茎鞘,特别是节间干物质的转运再利用以维持穗部的物质供给,减穴稳苗则在提升抽穗前节间和叶鞘干物质积累的基础上,促进其抽穗后的转运以降低弱光胁迫对水稻产量和品质的不利影响。 展开更多
关键词 水稻 弱光胁迫 田间配置 茎鞘 物质积累转运
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花后弱光对软质小麦干物质积累转运、籽粒产量和淀粉品质的影响
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作者 杨婷婷 陈娟 +4 位作者 ABDUL Rehman 李婧 闫素辉 汪建来 李文阳 《作物学报》 北大核心 2025年第8期2204-2219,共16页
探究花后弱光对软质小麦干物质积累转运、籽粒产量和淀粉品质的影响,为江淮地区软质小麦抗逆优质丰产栽培技术提供参考。于2022—2024年度,在大田条件下,以软质小麦品种荃麦725(QM725)和扬麦15(YM15)为材料,试验于小麦灌浆期(开花后7~35... 探究花后弱光对软质小麦干物质积累转运、籽粒产量和淀粉品质的影响,为江淮地区软质小麦抗逆优质丰产栽培技术提供参考。于2022—2024年度,在大田条件下,以软质小麦品种荃麦725(QM725)和扬麦15(YM15)为材料,试验于小麦灌浆期(开花后7~35 d)设置3个遮光处理,即遮光10%(S1)、遮光20%(S2)和遮光30%(S3),以自然光照条件作为对照(CK)。研究花后弱光胁迫对软质小麦干物质积累转运、籽粒产量和淀粉品质形成的影响。结果表明,与对照(CK)相比,花后弱光显著增加了花前器官同化物的转运量、转运率以及对籽粒的贡献率,减少了花后光合同化物的积累量以及籽粒贡献率。花后不同弱光处理后,显著降低了小麦穗粒数和千粒重,进而导致籽粒产量降低,且在各处理下,虽提高了小麦籽粒蛋白质含量,但显著降低了籽粒淀粉含量、籽粒蛋白质和淀粉积累量。花后弱光胁迫下,显著降低了软质小麦B型淀粉粒(粒径≤10.0μm)体积、表面积和数目百分比,增加了A型淀粉粒(粒径>10.0μm)体积、表面积百分比,对软质小麦籽粒A型淀粉粒数目百分比无显著影响,只有年份间差异显著。在B型淀粉粒中,弱光对粒径0.1~2.8μm淀粉粒体积百分比的影响大于2.8~10.0μm淀粉粒。在A型淀粉粒中,弱光对粒径>22.0μm淀粉粒体积百分比的影响大于10.0~22.0μm淀粉粒。不同程度弱光处理下,小麦峰值黏度、低谷黏度、最终黏度等糊化特性均显著降低,且虽提高了淀粉热焓值参数,但显著降低了起始温度、峰值温度和终止温度。花后弱光显著影响了小麦干物质积累、转运以及对籽粒的贡献率,并降低了小麦穗粒数、千粒重和籽粒产量,虽提高了籽粒蛋白质含量,但显著降低了籽粒淀粉含量,从而影响了小麦籽粒产量的形成。随着花后光照强度的降低,对B型淀粉粒的影响大于A型淀粉粒,即B型淀粉粒体积、表面积和数目占比降低,A型淀粉粒体积和表面积占比增加,小麦峰值黏度等糊化参数、起始温度、峰值温度和终止温度等显著降低,最终影响小麦籽粒品质。 展开更多
关键词 软质小麦 弱光 干物质积累转运 籽粒产量 粒度分布 糊化特性
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