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纳米分辨近场光学显微成象技术现状 被引量:1
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作者 吴世法 简国树 潘石 《中国图象图形学报(A辑)》 CSCD 2000年第8期625-631,共7页
介绍了纳米分辨近场光学显微成象技术现状 .近场光学显微成象技术大体可分为小孔扫描近场光学显微镜(A- SNOM)、无孔径尖散射扫描近场光学显微镜 (S- SNOM)和光子扫描隧道显微镜 (PSTM)三种基本类型 .除介绍这三类近场光学显微镜简要成... 介绍了纳米分辨近场光学显微成象技术现状 .近场光学显微成象技术大体可分为小孔扫描近场光学显微镜(A- SNOM)、无孔径尖散射扫描近场光学显微镜 (S- SNOM)和光子扫描隧道显微镜 (PSTM)三种基本类型 .除介绍这三类近场光学显微镜简要成象原理、现状和各自特点外 ,还重点介绍了大连理工大学纳米成象技术研究组 PSTM的研究进展 ,即 PSTM消假象数值模拟和实验研究结果 ,其实验空间分辨首次达到 2 .8nm线扩展函数半高宽的水平 . 展开更多
关键词 近场光学 扫描近场光学显微镜 s-snom PSTM
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Graphene plasmonic nanoresonators/graphene heterostructures for efficient room-temperature infrared photodetection 被引量:1
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作者 Tian Sun Weiliang Ma +6 位作者 Donghua Liu Xiaozhi Bao Babar Shabbir Jian Yuan Shaojuan Li Dacheng Wei Qiaoliang Bao 《Journal of Semiconductors》 EI CAS CSCD 2020年第7期54-60,共7页
High-performance infrared(IR)photodetectors made by low dimensional materials promise a wide range of applications in communication,security and biomedicine.Moreover,light-harvesting effects based on novel plasmonic m... High-performance infrared(IR)photodetectors made by low dimensional materials promise a wide range of applications in communication,security and biomedicine.Moreover,light-harvesting effects based on novel plasmonic materials and their combinations with two-dimensional(2 D)materials have raised tremendous interest in recent years,as they may potentially help the device complement or surpass currently commercialized IR photodetectors.Graphene is a particularly attractive plasmonic material because graphene plasmons are electrically tunable with a high degree of electromagnetic confinement in the mid-infrared(mid-IR)to terahertz regime and the field concentration can be further enhanced by forming nanostructures.Here,we report an efficient mid-IR room-temperature photodetector enhanced by plasmonic effect in graphene nanoresonators(GNRs)/graphene heterostructure.The plasmon polaritons in GNRs are size-dependent with strong field localization.Considering that the size and density of GNRs are controllable by chemical vapor deposition method,our work opens a cost-effective and scalable pathway to fabricate efficient IR optoelectronic devices with wavelength tunability. 展开更多
关键词 graphene plasmons nanoresonators s-snom mid-infrared photodetectors
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基于COMSOL的纳米傅里叶红外光谱系统数值模型 被引量:3
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作者 陈楠 王玥 +2 位作者 王博雨 夏洋 刘涛 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2021年第4期1125-1130,共6页
傅里叶红外光谱(FTIR)是材料表征的一种重要手段,然而受限于光的衍射极限,传统傅里叶红外光谱仪的极限空间分辨率在微米量级,无法应用于纳米材料的表征。纳米傅里叶红外光谱(Nano-FTIR)是一种新兴的超分辨光谱表面分析技术,其以纳米级... 傅里叶红外光谱(FTIR)是材料表征的一种重要手段,然而受限于光的衍射极限,传统傅里叶红外光谱仪的极限空间分辨率在微米量级,无法应用于纳米材料的表征。纳米傅里叶红外光谱(Nano-FTIR)是一种新兴的超分辨光谱表面分析技术,其以纳米级空间分辨率、宽光谱范围和高化学灵敏性的特点在纳米材料表征研究中展现了巨大的潜力。定性及定量的研究Nano-FTIR信号高空间分辨的来源和系统中光谱信号的提取过程,可以为Nano-FTIR仪器的设计研发和样品光谱表征结果的解释提供重要依据。该研究从典型的仪器结构和基本的工作原理出发,在多物理场有限元分析软件COMSOL中建立了等效研究模型,并对模型的重要细节和数值计算过程分别进行了说明。在仿真研究中,首先基于麦克斯韦电磁波理论计算了模型空间的电磁场增强情况,再模拟了探针在介电常数差异巨大的两种材料交界处的“线扫”过程,探讨了针尖近场增强信号的空间分辨率。随后,以探针与样品的散射功率为数值模型的研究对象,仿真了探针“轻拍”对信号的调制和解调提取的过程,并讨论了不同入射倾角和解调频率对光谱信号提取的影响。最后,为了验证模型的合理性,仿真了20,100和300 nm三种厚度SiO 2薄膜样品在900~1250 cm^(-1)波数范围的光谱响应,并将仿真得到的光谱与实测结果进行了对比。结果表明随着样品厚度的增厚,光谱信号得到相应的增强,模型预测的谱图与实测谱图波形与波峰位置较为一致,且与以往一些文献中采用针尖-样品间电场强度表示针尖处散射信号强弱的方法相比,获得的谱图在峰形上更为接近。提出的数值模型可用于Nano-FTIR光谱的预测,此外,模型也具有一定的通用性,可以为其他基于散射型近场光学显微(s-SNOM)技术的太赫兹光谱技术和针尖增强拉曼光谱研究提供一定的借鉴。 展开更多
关键词 纳米傅里叶红外光谱 散射式扫描探针显微镜 COMSOL 有限元仿真 数值模型
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LaAlO_3/SrTiO_3界面导电性的近场成像(英文)
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作者 成龙 王冬利 +4 位作者 戴思远 严跃冬 范晓东 魏来明 曾长淦 《红外与毫米波学报》 SCIE EI CAS CSCD 北大核心 2017年第5期534-537,共4页
铝酸镧/钛酸锶(LaALO_3/SrTiO_3)异质界面被发现具有二维导电性并呈现出其他一些有趣的呈展现象.而此前,LaAlO_3/SrTiO_3异质界面的导电性主要都是通过电学方法进行表征.这里作者首次提出利用散射式扫描近场光学显微镜(s-SNOM)对LaAlO_3... 铝酸镧/钛酸锶(LaALO_3/SrTiO_3)异质界面被发现具有二维导电性并呈现出其他一些有趣的呈展现象.而此前,LaAlO_3/SrTiO_3异质界面的导电性主要都是通过电学方法进行表征.这里作者首次提出利用散射式扫描近场光学显微镜(s-SNOM)对LaAlO_3/SrTiO_3界面的导电性进行空间成像,这为研究过渡金属氧化物异质界面体系的物理现象提供了一个新的手段. 展开更多
关键词 过渡金属氧化物异质界面 铝酸镧/钛酸锶 界面导电性 散射式扫描近场光学显微镜
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Challenges and opportunities in IR nanospectroscopy measurements of energy materials 被引量:1
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作者 Elad Gross 《Nano Research》 SCIE EI CAS CSCD 2019年第9期2200-2210,共11页
The performance of functional materials and specifically energy-related functional materials,such as fuel cells,solar cells,batteries and catalysts depends on the their local,nanoscale properties.However,heterogeneiti... The performance of functional materials and specifically energy-related functional materials,such as fuel cells,solar cells,batteries and catalysts depends on the their local,nanoscale properties.However,heterogeneities in the phase,structure and composition of these functional materials makes it difficult to directly monitor and identify the influence of local physicochemical parameters on their global functionality.In this review we will discuss recent developments in the field of IR nanospectroscopy that enables the extraction of detailed chemical information at the nanoscale and the identification of nanoscale properties that influence the global performances of functional materials.Specifically,we will discuss the ways by which infrared (IR) nanospectroscopy techniques,namely photo thermal induced resonance (PTIR) and scattering scanning near-field optical microscopy (s-SNOM),are utilized in order to identify nanoscale properties and their influence on the functionality of halide-perovskite solar cells and catalytic nanoparticles.In the last part of this review we will address the technical challenges and opportunities in expanding the scope of IR nanospectroscopy measurements into the field of electrochemistry-based functional materials. 展开更多
关键词 infrared(IR)nanospectroscopy photo thermal in duced resonance(PTIR) scattering sea nning n ear-field optical microscopy(s-snom) heterogeneous CATALYSIS PEROVSKITE solar cells
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Effects of edge on graphene plasmons as revealed by infrared nanoimaging
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作者 Qingyang Xu Teng Ma +7 位作者 Mohammad Danesh Bannur Nanjunda Shivananju Sheng Gan Jingchao Song Cheng-Wei Qiu Hui-Ming Cheng Wencai Ren Qiaoliang Bao 《Light(Science & Applications)》 SCIE EI CAS CSCD 2016年第1期266-274,共9页
We used scattering-type scanning near-field optical microscopy(s-SNOM)to investigate the plasmonic properties of edges in well-defined graphene nanostructures,including sharp tapers,nanoribbons and nanogaps,which were... We used scattering-type scanning near-field optical microscopy(s-SNOM)to investigate the plasmonic properties of edges in well-defined graphene nanostructures,including sharp tapers,nanoribbons and nanogaps,which were all fabricated via the growth-etching chemical vapor deposition(GECVD)method.The obtained near-field images revealed the localized plasmon modes along the graphene nanoribbon;these modes strongly depended on the size of the graphene pattern,the angle of the tapered graphene and the infrared excitation wavelength.These interesting plasmon modes were verified by numerical simulations and explained by the reflection,and interference of electromagnetic waves at the graphene–SiO_(2) edge.The constructive interference at the graphene nanogap caused by charge accumulation was demonstrated for the first time.Using the infrared nanoimaging technique,greater plasmon broadening was observed in the zigzag edge than in the armchair edge.Our study suggests that graphene edges should be separated by an effective working distance to avoid the overlapping of localized plasmon modes,which is very important for the design of graphene-based plasmonic circuits and devices. 展开更多
关键词 edge chirality GRAPHENE graphene plasmon NANORIBBON NANOGAP near-field microscopy s-snom
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