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Optical manipulation of gold nanoparticles using an optical nanofiber 被引量:3
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作者 李英 胡艳军 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第3期337-339,共3页
Gold nanoparticles are gaining increasing attention due to their biological and medical applications.In this letter,we experimentally demonstrate the optical manipulation of 250-nm-diameter gold nanoparticles along an... Gold nanoparticles are gaining increasing attention due to their biological and medical applications.In this letter,we experimentally demonstrate the optical manipulation of 250-nm-diameter gold nanoparticles along an optical nanofiber(550 nm in diameter) injected by an 808-nm laser light.The nanoparticles situated in the evanescent optical field are trapped by optical gradient force and move along the direction of light propagation due to optical scattering force.The velocities reach as high as 132 μm/s at an optical power of 80 mW. 展开更多
关键词 optical manipulation gold nanoparticles NANOFIBER
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Optogenetics:a novel optical manipulation tool for medical investigation 被引量:2
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作者 Jun-Ping Yao, Zheng-Qin Yin 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2012年第4期517-522,共6页
Optogenetics is a new and rapidly evolving gene and neuroengineering technology that allows optical control of specific populations of neurons without affecting other neurons in the brain at high temporal and spatial ... Optogenetics is a new and rapidly evolving gene and neuroengineering technology that allows optical control of specific populations of neurons without affecting other neurons in the brain at high temporal and spatial resolution. By heterologous expression of the light-sensitive membrane proteins, cell type-specific depolarization or hyperpolarization can be optically induced on a millisecond time scale. Optogenetics has the higher selectivity and specificity compared to traditional electrophysiological techniques and pharmaceutical methods. It has been a novel promising tool for medical research. Because of easy handling, high temporal and spatial precision, optogenetics has been applied to many aspects of nervous system research, such as tactual neural circuit, visual neural circuit, auditory neural circuit and olfactory neural circuit, as well as research of some neurological diseases. The review highlights the recent advances of optogenetics in medical study. 展开更多
关键词 light-sensitive proteins OPTOGENETICS optical manipulation MEDICAL
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Optical manipulation: from fluid to solid domains 被引量:7
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作者 Qiannan Jia Wei Lyu +3 位作者 Wei Yan Weiwei Tang Jinsheng Lu Min Qiu 《Photonics Insights》 2023年第2期32-90,共59页
Light carries energy and momentum,laying the physical foundation of optical manipulation that has facilitated advances in myriad scientific disciplines,ranging from biochemistry and robotics to quantum physics.Utilizi... Light carries energy and momentum,laying the physical foundation of optical manipulation that has facilitated advances in myriad scientific disciplines,ranging from biochemistry and robotics to quantum physics.Utilizing the momentum of light,optical tweezers have exemplified elegant light–matter interactions in which mechanical and optical momenta can be interchanged,whose effects are the most pronounced on micro and nano objects in fluid suspensions.In solid domains,the same momentum transfer becomes futile in the face of dramatically increased adhesion force.Effective implementation of optical manipulation should thereupon switch to the“energy”channel by involving auxiliary physical fields,which also coincides with the irresistible trend of enriching actuation mechanisms beyond sole reliance on light-momentum-based optical force.From this perspective,this review covers the developments of optical manipulation in schemes of both momentum and energy transfer,and we have correspondingly selected representative techniques to present.Theoretical analyses are provided at the beginning of this review followed by experimental embodiments,with special emphasis on the contrast between mechanisms and the practical realization of optical manipulation in fluid and solid domains. 展开更多
关键词 optical manipulation optical force adhesion force photothermal effects MULTIPHYSICS
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All-optical manipulation of micrometer-sized metallic particles 被引量:6
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作者 YUQUAN ZHANG XIUJIE Dou +3 位作者 YANMENG DAI XIANYOU WANG CHANGJUN MIN AND XIAOCONG YUAN 《Photonics Research》 SCIE EI 2018年第2期66-71,共6页
Optical traps use focused laser beams to generate forces on targeted objects ranging in size from nanometers to micrometers. However, for their high coefficients of scattering and absorption, micrometer-sized metallic... Optical traps use focused laser beams to generate forces on targeted objects ranging in size from nanometers to micrometers. However, for their high coefficients of scattering and absorption, micrometer-sized metallic particles were deemed non-trappable in three dimensions using a single beam. This barrier is now removed. We demon- strate, both in theory and experiment, three-dimensional (3D) dynamic all-optical manipulations of micrometer- sized gold particles under high focusing conditions. The force of gravity is found to balance the positive axial optical force exerted on particles in an inverted optical tweezers system to form two trapping positions along the vertical direction. Both theoretical and experimental results confirm that stable 3D manipulations are achievable for these particles regardl for a variety of in-depth ess of beam polarization and wavelength. research requiting metallic particles. The present work opens up new opportunities . 展开更多
关键词 (350.4855) optical tweezers or optical manipulation (140.7010) Laser trapping (350 3950) Micro-optics.
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Transverse manipulation of particles using Bessel beam of tunable size generated by cross-phase modulation
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作者 乔响来 程雪梅 +3 位作者 张倩 张文定 任兆玉 白晋涛 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第4期747-753,共7页
We report on a method to achieve multiple microscopic particles being trapped and manipulated transversely by using a size-tunable Bessel beam generated by cross-phase modulation(XPM)based on the thermal nonlinear opt... We report on a method to achieve multiple microscopic particles being trapped and manipulated transversely by using a size-tunable Bessel beam generated by cross-phase modulation(XPM)based on the thermal nonlinear optical effect.The results demonstrate that multiple polystyrene particles can be stably trapped simultaneously,and the number of the trapped particles can be controlled by varying the trapping beam power.In addition,the trapped particles can be manipulated laterally with micron-level precision by changing the size of J_(0)Bessel beam.This work provides a simple but efficient way to trap and manipulate multiple particles simultaneously,which would have potential applications in many fields such as cell sorting and transportation. 展开更多
关键词 optical manipulation optical trapping J_(0)Bessel beam cross-phase modulation
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Spatial quantum coherent modulation with perfect hybrid vector vortex beam based on atomic medium
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作者 马燕 杨欣 +6 位作者 常虹 杨鑫琪 曹明涛 张晓斐 高宏 董瑞芳 张首刚 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第2期360-364,共5页
The perfect hybrid vector vortex beam(PHVVB)with helical phase wavefront structure has aroused significant concern in recent years,as its beam waist does not expand with the topological charge(TC).In this work,we inve... The perfect hybrid vector vortex beam(PHVVB)with helical phase wavefront structure has aroused significant concern in recent years,as its beam waist does not expand with the topological charge(TC).In this work,we investigate the spatial quantum coherent modulation effect with PHVVB based on the atomic medium,and we observe the absorption characteristic of the PHVVB with different TCs under variant magnetic fields.We find that the transmission spectrum linewidth of PHVVB can be effectively maintained regardless of the TC.Still,the width of transmission peaks increases slightly as the beam size expands in hot atomic vapor.This distinctive quantum coherence phenomenon,demonstrated by the interaction of an atomic medium with a hybrid vector-structured beam,might be anticipated to open up new opportunities for quantum coherence modulation and accurate magnetic field measurement. 展开更多
关键词 perfect hybrid vector vortex beam topological charge quantum coherence optical manipulation
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Movement of a millimeter-sized oil drop pushed by optical force
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作者 张莉 佘卫龙 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第10期223-226,共4页
We show experimentally that when an unfocused continuous wave(CW) laser beam is obliquely incident onto the surface of a millimeter-sized mineral oil drop on sucrose solution, it will exert a pushing force on the oi... We show experimentally that when an unfocused continuous wave(CW) laser beam is obliquely incident onto the surface of a millimeter-sized mineral oil drop on sucrose solution, it will exert a pushing force on the oil drop, making it move forwards along the surface of the sucrose solution. However, after a period of time, the oil drop stops moving. This can be explained as the phenomenon caused by the change of Abraham momentum, the optical gradient force, and friction together. 展开更多
关键词 optical force optical manipulation the movement of a millimeter-sized oil drop
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Improvements for Manipulating DNA with Optical Tweezers
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作者 朱春丽 李静 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第10期170-173,共4页
Recently, numerous biological macromolecular experiments have been conducted with optical tweezers. For the single molecular stretching experiment with optical tweezers, three ways to determine the initial adhesion po... Recently, numerous biological macromolecular experiments have been conducted with optical tweezers. For the single molecular stretching experiment with optical tweezers, three ways to determine the initial adhesion point of DNA on the coverslip are described in this work. In addition, a new method through analyzing the displacement variance of the trapped particle to obtain the trap height is introduced. Using our proposed methods, the obtained force-extension curve for the operated dsDNA agrees well with the worm-like chain model. These improved methods are also applicable to other related biological macromolecular experiments requiring high precision. 展开更多
关键词 DNA Improvements for Manipulating DNA with optical Tweezers
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Optical Trapping and Manipulation Using Optical Fibers 被引量:3
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作者 Yuanhao Lou Dan Wu Yuanjie Pang 《Advanced Fiber Materials》 CAS 2019年第2期83-100,共18页
An optical trap forms a restoring optical force field to immobilize and manipulate tiny objects.A fiber optical trap is capable of establishing the restoring optical force field using one or a few pieces of optical fi... An optical trap forms a restoring optical force field to immobilize and manipulate tiny objects.A fiber optical trap is capable of establishing the restoring optical force field using one or a few pieces of optical fiber,and it greatly simplifies the optical setup by removing bulky optical components,such as microscope objectives from the working space.It also inherits other major advantages of optical fibers:flexible in shape,robust against disturbance,and highly integrative with fiber-optic sys-tems and on-chip devices.This review will begin with a concise introduction on the principle of optical trapping techniques,followed by a comprehensive discussion on different types of fiber optical traps,including their structures,functionalities and associated fabrication techniques.A brief outlook to the future development and potential applications of fiber optical traps is given at the end. 展开更多
关键词 Fiber optical traps optical trapping optical manipulation optical fiber
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A Micro-Sized Light-Driven Pico-Second Oscillator
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作者 Ali J. Sabbah R. Hamam 《Journal of Applied Mathematics and Physics》 2020年第12期2793-2800,共8页
Light carries linear momentum and can therefore exert a radiation force on the objects that it encounters. This established fact enabled optical manipulation of micro/nano-sized objects, as well as macroscopic objects... Light carries linear momentum and can therefore exert a radiation force on the objects that it encounters. This established fact enabled optical manipulation of micro/nano-sized objects, as well as macroscopic objects such as solar sails, among many other important applications. While these efforts benefit from the average value of light’s linear momentum, in this article, we propose exploiting the temporal variation of light’s linear momentum to achieve an oscillatory force of microNewton amplitude and picosecond period. We validate our proposal by analytical calculations and time domain simulations of Maxwell’s equations in the case of a high-index quarter-wave slab irradiated by a terahertz plane electromagnetic wave. In particular, we show that for plane wave terahertz light of electric field amplitude 5000 V/m and frequency 4.8 THz, an oscillatory radiation pressure of amplitude 1.8 × 10<sup>-4</sup> N/m<sup>2</sup> and 0.1 ps period can be achieved. 展开更多
关键词 Radiation Force optical manipulation/Micromachines Instantaneous Electromagnetic Linear Momentum Density Linear Momentum Conservation Light Driven Oscillator
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Manipulation and detection of single nanoparticles and biomolecules by a photonic nanojet 被引量:15
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作者 Yu-Chao Li Hong-Bao Xin +4 位作者 Hong-Xiang Lei Lin-Lin Liu Yan-Ze Li Yao Zhang Bao-Jun Li 《Light(Science & Applications)》 SCIE EI CAS CSCD 2016年第1期387-395,共9页
Optical methods to manipulate and detect nanoscale objects are highly desired in both nanomaterials and molecular biology fields.Optical tweezers have been used to manipulate objects that range in size from a few hund... Optical methods to manipulate and detect nanoscale objects are highly desired in both nanomaterials and molecular biology fields.Optical tweezers have been used to manipulate objects that range in size from a few hundred nanometres to several micrometres.The emergence of near-field methods that overcome the diffraction limit has enabled the manipulation of objects below 100 nm.A highly free manipulation with signal-enhanced real-time detection,however,remains a challenge for single sub-100-nm nanoparticles or biomolecules.Here we show an approach that uses a photonic nanojet to perform the manipulation and detection of single sub-100-nm objects.With the photonic nanojet generated by a dielectric microlens bound to an optical fibre probe,three-dimensional manipulations were achieved for a single 85-nm fluorescent polystyrene nanoparticle as well as for a plasmid DNA molecule.Backscattering and fluorescent signals were detected with the enhancement factors up to~103 and~30,respectively.The demonstrated approach provides a potentially powerful tool for nanostructure assembly,biosensing and single-biomolecule studies. 展开更多
关键词 NANOPARTICLES optical detection optical manipulation single biomolecules
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Optical disassembly of cellular clusters by tunable ‘tug-of-war’ tweezers 被引量:4
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作者 Anna S Bezryadina Daryl C Preece +1 位作者 Joseph C Chen Zhigang Chen 《Light(Science & Applications)》 SCIE EI CAS CSCD 2016年第1期444-450,共7页
Bacterial biofilms underlie many persistent infections,posing major hurdles in antibiotic treatment.Here we design and demonstrate‘tug-of-war’optical tweezers that can facilitate the assessment of cell–cell adhesio... Bacterial biofilms underlie many persistent infections,posing major hurdles in antibiotic treatment.Here we design and demonstrate‘tug-of-war’optical tweezers that can facilitate the assessment of cell–cell adhesion—a key contributing factor to biofilm development,thanks to the combined actions of optical scattering and gradient forces.With a customized optical landscape distinct from that of conventional tweezers,not only can such‘tug-of-war’tweezers stably trap and stretch a rod-shaped bacterium in the observing plane,but,more importantly,they can also impose a tunable lateral force that pulls apart cellular clusters without any tethering or mechanical movement.As a proof of principle,we examined a Sinorhizobium meliloti strain that forms robust biofilms and found that the strength of intercellular adhesion depends on the growth medium.This technique may herald new photonic tools for optical manipulation and biofilm study,as well as other biological applications. 展开更多
关键词 bacterial adhesion BIOFILM optical forces optical manipulation tug-of-war optical tweezers
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Trapping and revolving micron particles by transformable line traps of optical tweezers 被引量:1
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作者 Lingyao Yu Yuan Jia +6 位作者 Xujin Hu Shaofei Wang Hongyu Chen Shuai Liu Hongchang Deng Maowen Wang Jun Yin 《Chinese Optics Letters》 SCIE EI CAS CSCD 2022年第5期53-57,共5页
Optical line tweezers have been an efficient tool for the manipulation of large micron particles. In this paper, we propose to create line traps with transformable configurations by using the transverse electromagneti... Optical line tweezers have been an efficient tool for the manipulation of large micron particles. In this paper, we propose to create line traps with transformable configurations by using the transverse electromagnetic mode-like laser source.We designed an optical path to simulate the generation of the astigmatic beams and line traps with a series of lenses to realize the rotational transformation with respect to the rotation angle of cylindrical lenses. It is shown that the spherical particles with diameters ranging from 5 μm to 20 μm could be trapped, aligned, and revolved in experiment. The periodical trapping forces generated by transformable line traps might open an alternative way to investigate the mechanical properties of soft particles and biological cells. 展开更多
关键词 optical line tweezers transformable line traps optical manipulation
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Generation and reconfiguration of interference-pattern helico-conical beams
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作者 Dongye Xu Shaoxiang Duan +5 位作者 Xingyu Mao Wenmin Ren Yuan Yao Wei Lin Hao Zhang Bo Liu 《Chinese Optics Letters》 SCIE EI CAS CSCD 2024年第9期42-47,共6页
We proposed an approach for the generation of interference-pattern helico-conical beams(HCBs)both theoretically and experimentally.The HCBs exhibiting intricate fringe structures are obtained by exploiting amplitude m... We proposed an approach for the generation of interference-pattern helico-conical beams(HCBs)both theoretically and experimentally.The HCBs exhibiting intricate fringe structures are obtained by exploiting amplitude modulation and interference techniques.To precisely control the optical field distributions,we manipulate the azimuthal term within the helicoconical phase expression,presenting several illustrative cases that highlight the versatility of our approach.Through further combinations,more sophisticated comprehensive HCB patterns are investigated.This study deepens our knowledge about spiral-like optical patterns and paves a new avenue for potential applications,especially in the fields of particle manipulation,nanostructure fabrication,and optical metrology. 展开更多
关键词 helico-conical beams optical field manipulation orbital angular momentum optical interference
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Low-temperature optothermal nanotweezers 被引量:2
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作者 Jianxing Zhou Xiaoqi Dai +6 位作者 Yuhang Peng Yili Zhong Ho-Pui Ho Yonghong Shao Bruce Zhi Gao Junle Qu Jiajie Chen 《Nano Research》 SCIE EI CSCD 2023年第5期7710-7715,共6页
Optical tweezers that rely on laser irradiation to capture and manipulate nanoparticles have provided powerful tools for biological and biochemistry studies.However,the existence of optical diffraction-limit and the t... Optical tweezers that rely on laser irradiation to capture and manipulate nanoparticles have provided powerful tools for biological and biochemistry studies.However,the existence of optical diffraction-limit and the thermal damage caused by high laser power hinder the wider application of optical tweezers in the biological field.For the past decade,the emergence of optothermal tweezers has solved the above problems to a certain extent,while the auxiliary agents used in optothermal tweezers still limit their biocompatibility.Here,we report a kind of nanotweezers based on the sign transformation of the thermophoresis coefficient of colloidal particles in low-temperature environment.Using a self-made microfluidic refrigerator to reduce the ambient temperature to around 0℃in the microfluidic cell,we can control a single nanoparticle at lower laser power without adding additional agent solute in the solution.This novel optical tweezering scheme has provided a new path for the manipulation of inorganic nanoparticles as well as biological particles. 展开更多
关键词 optothermal tweezers optical manipulation microfluidic device THERMOPHORESIS thermo-osmotic flow
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Light-driven micro-tool equipped with a syringe function 被引量:7
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作者 Mark Jayson Villangca Darwin Palima +1 位作者 Andrew Rafael Bañas Jesper Glückstad 《Light(Science & Applications)》 SCIE EI CAS CSCD 2016年第1期499-505,共7页
Leveraging developments in microfabrication open new possibilities for optical manipulation.With the structural design freedom from three-dimensional printing capabilities of two-photon polymerization,we are starting ... Leveraging developments in microfabrication open new possibilities for optical manipulation.With the structural design freedom from three-dimensional printing capabilities of two-photon polymerization,we are starting to see the emergence of cleverly shaped‘light robots’or optically actuated micro-tools that closely resemble their macroscopic counterparts in function and sometimes even in form.In this work,we have fabricated a new type of light robot that is capable of loading and unloading cargo using photothermally induced convection currents within the body of the tool.We have demonstrated this using silica and polystyrene beads as cargo.The flow speeds of the cargo during loading and unloading are significantly larger than when using optical forces alone.This new type of light robot presents a mode of material transport that may have a significant impact on targeted drug delivery and nanofluidics injection. 展开更多
关键词 material transport optical manipulation thermal convection two-photon fabrication
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Photonic tractor beams:a review 被引量:7
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作者 Weiqiang Ding Tongtong Zhu +1 位作者 Lei-Ming Zhou Cheng-Wei Qiu 《Advanced Photonics》 EI CSCD 2019年第2期6-19,共14页
Usually,an unfocused light beam,such as a paraxial Gaussian beam,can exert a force on an object along the direction of light propagation,which is known as light pressure.Recently,however,it was found that an unfocused... Usually,an unfocused light beam,such as a paraxial Gaussian beam,can exert a force on an object along the direction of light propagation,which is known as light pressure.Recently,however,it was found that an unfocused light beam can also exert an optical pulling force(OPF)on an object toward the source direction;the beam is accordingly named an optical tractor beam.In recent years,this intriguing force has attracted much attention and a huge amount of progress has been made both in theory and experiment.We briefly review recent progress achieved on this topic.We classify the mechanisms to achieve an OPF into four different kinds according to the dominant factors.The first one is tailoring the incident beam.The second one is engineering the object’s optical parameters.The third one is designing the structured material background,in which the light–matter interaction occurs,and the fourth one is utilizing the indirect photophoretic force,which is related to the thermal effect of light absorption.For all the methods,we analyze the basic principles and review the recent achievements.Finally,we also give a brief conclusion and an outlook on the future development of this field. 展开更多
关键词 optical pulling force optical tractor beam optical manipulation Bessel beam nanophotonic structures PHOTOPHORESIS photophoretic force
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Single nanoparticle trapping based on on-chip nanoslotted nanobeam cavities 被引量:2
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作者 DAQUAN YANG FEI GAO +3 位作者 QI-TAo CAO CHUAN WANG YUEFENG JI AND YuN-FENG XIAO 《Photonics Research》 SCIE EI 2018年第2期99-108,共10页
Optical trapping techniques are of great interest since they have the advantage of enabling the direct handling of nanoparticles. Among various optical trapping systems, photonic crystal nanobeam cavities have attract... Optical trapping techniques are of great interest since they have the advantage of enabling the direct handling of nanoparticles. Among various optical trapping systems, photonic crystal nanobeam cavities have attracted great attention for integrated on-chip trapping and manipulation. However, optical trapping with high efficiency and low input power is still a big challenge in nanobeam cavities because most of the light energy is confined within the solid dielectric region. To this end, by incorporating a nanoslotted structure into an ultracompact one- dimensional photonic crystal nanobeam cavity structure, we design a promising on-chip device with ultralarge trapping potential depth to enhance the optical trapping characteristic of the cavity. In this work, we first provide a systematic analysis of the optical trapping force for an airborne polystyrene (PS) nanoparticle trapped in a cavity model. Then, to validate the theoretical analysis, the numerical simulation proof is demonstrated in detail by using the three-dimensional finite element method. For trapping a PS nanoparticle of 10 nm radius within the air-slot, a maximum trapping force as high as 8.28 nN/mW and a depth of trapping potential as large as 1.15 × 105 kBTmW-1 are obtained, where kB is the Boltzmann constant and T is the system temperature. We estimate a lateral trapping stiffness of 167.17 pN. nm-1 . mW-1 for a 10 nm radius PS nanoparticle along the cavity x-axis, more than two orders of magnitude higher than previously demonstrated on-chip, near field traps. Moreover, the threshold power for stable trapping as low as 0.087 μW is achieved. In addition, trapping of a single 25 nm radius PS nanoparticle causes a 0.6 nm redshift in peak wavelength. Thus, the proposed cavity device can be used to detect single nanoparticle trapping by monitoring the resonant peak wavelength shift. We believe that the architecture with features of an ultracompact footprint, high integrahility with optical waveguides/cir- cuits, and efficient trapping demonstrated here will provide a promising candidate for developing a lab-on-a-chip device with versatile functionalities. 展开更多
关键词 (130.3120) Integrated optics devices (350.4238) Nanophotonics and photonic crystals (350.4855) optical tweezers oroptical manipulation (020.7010) Laser trapping (230.5298) Photonic crystals (230.5750) Resonators.
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Atomistic modeling and rational design of optothermal tweezers for targeted applications
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作者 Hongru Ding Pavana Siddhartha Kollipara +1 位作者 Linhan Lin Yuebing Zheng 《Nano Research》 SCIE EI CAS CSCD 2021年第1期295-303,共9页
Optical manipulation of micro/nanoscale objects is of importance in life sciences,colloidal science,and nanotechnology.Optothermal tweezers exhibit superior manipulation capability at low optical intensity.However,our... Optical manipulation of micro/nanoscale objects is of importance in life sciences,colloidal science,and nanotechnology.Optothermal tweezers exhibit superior manipulation capability at low optical intensity.However,our implicit understanding of the working mechanism has limited the further applications and innovations of optothermal tweezers.Herein,we present an atomistic view of opto-thermo-electro-mechanic coupling in optothermal tweezers,which enables us to rationally design the tweezers for optimum performance in targeted applications.Specifically,we have revealed that the non-uniform temperature distribution induces water polarization and charge separation,which creates the thermoelectric field dominating the optothermal trapping.We further design experiments to systematically verify our atomistic simulations.Guided by our new model,we develop new types of optothermal tweezers of high performance using low-concentrated electrolytes.Moreover,we demonstrate the use of new tweezers in opto-thermophoretic separation of colloidal particles of the same size based on the difference in their surface charge,which has been challenging for conventional optical tweezers.With the atomistic understanding that enables the performance optimization and function expansion,optothermal tweezers will further their impacts. 展开更多
关键词 optothermal tweezers optical tweezers optical manipulation THERMOPHORESIS molecular dynamics simulation
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Dynamically taming focal fields of femtosecond lasers for fabricating microstructures 被引量:3
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作者 Meng-Qiang Cai Qiang Wang +2 位作者 Cheng-Hou Tu Yong-Nan Li Hui-Tian Wang 《Chinese Optics Letters》 SCIE EI CAS CSCD 2022年第1期6-11,共6页
Micromachining based on femtosecond lasers usually requires accurate control of the sample movement,which may be very complex and costly.Therefore,the exploration of micromachining without sample movement is valuable.... Micromachining based on femtosecond lasers usually requires accurate control of the sample movement,which may be very complex and costly.Therefore,the exploration of micromachining without sample movement is valuable.Herein,we have illustrated the manipulation of optical fields by controlling the polarization or phase to vary periodically and then realized certain focal traces by real-time loading of the computer-generated holograms(CGHs) on the spatial light modulator.The focal trace is composed of many discrete focal spots,which are generated experimentally by using the real-time dynamically controlled CGHs.With the designed focal traces,various microstructures such as an ellipse,a Chinese character "Nan",and an irregular quadrilateral grid structure are fabricated in the z-cut LiNbO_(3) wafers,showing good qualities in terms of continuity and homogeneity.Our method proposes a movement free solution for micromachining samples and completely abandons the high precision stage and complex movement control,making microstructure fabrication more flexible,stable,and cheaper. 展开更多
关键词 manipulation of optical fields computer-generated holograms focal trace MICROSTRUCTURES
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