Search results for "Optical force"

showing 4 items of 4 documents

Integrated plasmonic nanotweezers for nanoparticle manipulation.

2016

We numerically demonstrate that short gold nanoparticle chains coupled to traditional SOI waveguides allow conceiving surface plasmon-based nanotweezers. This configuration provides for jumpless control of the trapping position of a nano-object as a function of the excitation wavelength, allowing for linear repositioning. This novel feature can be captivating for the conception of compact integrated optomechanical nanoactuators.

Materials scienceOptical TweezersOptical forcePhysics::OpticsSilicon on insulatorNanoparticleNanotechnology02 engineering and technology01 natural sciences010309 opticsOptics0103 physical sciencesPlasmonbusiness.industrySurface plasmon021001 nanoscience & nanotechnologySurface plasmon polaritonAtomic and Molecular Physics and OpticsOptical tweezersOptoelectronicsPlasmonicsOptical Tweezers; Plasmonics; Trapped ParticlesTrapped Particles0210 nano-technologybusinessRefractive indexOptics letters
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On-chip periodic arrays of optical traps based on the superposition of guided modes in silicon waveguides

2019

Since the pioneering work of Kawata and Tani [1], photonic waveguides have long been regarded as efficient optical conveyor belts for potential lab-on-a-chip applications. Indeed, near-field optical forces arising at the surface of such waveguides lead to efficient on-chip guided propulsion of micro- and even nanoparticles [2], as well as cells and bacteria in liquid solutions [3]. However, achieving stable and precisely controlled optical trapping of particles at the surface of a waveguide has been made possible only recently, and even then, it still requires complex photonic electro-optic tools to produce and handle on-chip standing waves [4].

Materials scienceSiliconbusiness.industry010401 analytical chemistryOptical forcePhysics::Opticschemistry.chemical_elementNanoparticle02 engineering and technology021001 nanoscience & nanotechnology01 natural sciences0104 chemical scienceslaw.inventionStanding waveSuperposition principlechemistryOptical tweezerslawOptoelectronicsPhotonics0210 nano-technologybusinessWaveguide
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Lasing condition for trapped modes in subwavelength--wired PT--symmetric resonators

2021

The ability to control the laser modes within a subwavelength resonator is of key relevance in modern optoelectronics. This work deals with the theoretical research on optical properties of a PT-symmetric nano-scaled dimer formed by two dielectric wires, one is with loss and the other with gain, wrapped with graphene sheets. We show the existence of two non-radiating trapped modes which transform into radiating modes by increasing the gain–loss parameter. Moreover, these modes reach the lasing condition for suitable values of this parameter, a fact that makes these modes achieve an ultra high quality factor that is manifested on the response of the structure when it is excited by a plane wa…

PhysicsCondensed matter physicsbusiness.industryOptical forcePlane waveFOS: Physical sciencesPhysics::OpticsDielectricAtomic and Molecular Physics and OpticsResonatorDipoleOpticsQuality (physics)Whispering-gallery wavebusinessLasing thresholdOptics (physics.optics)Physics - Optics
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Optical force rectifiers based on PT-symmetric metasurfaces

2018

We introduce here the concept of optical force rectifier based on parity-time symmetric metasurfaces. Directly linked to the properties of non-Hermitian systems engineered by balanced loss and gain constituents, we show that light can exert asymmetric pulling or pushing forces on metasurfaces depending on the direction of the impinging light. This generates a complete force rectification in the vicinity of the exceptional point. Our findings have the potential to spark the design of applications in optical manipulation where the forces, strictly speaking, act unidirectionally. R.A. and B.G. would like to acknowledge financial support from the Max Planck Society. J.C. acknowledges the suppor…

[SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph]PhysicsElectromagnetic field calculationsMaterialesExceptional pointbusiness.industryOptical forceFísicaPhysics::Optics02 engineering and technology021001 nanoscience & nanotechnology01 natural sciences[SPI.MAT]Engineering Sciences [physics]/MaterialsRectifierRectificationMetamaterials0103 physical sciencesSpark (mathematics)OptoelectronicsElectrónica[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/Microelectronics010306 general physics0210 nano-technologybusinessPhysical Review B
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