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Fabrication and Operation of a Nano-Optical Conveyor Belt
- Source :
- Journal of visualized experiments : JoVE. (102)
- Publication Year :
- 2015
-
Abstract
- The technique of using focused laser beams to trap and exert forces on small particles has enabled many pivotal discoveries in the nanoscale biological and physical sciences over the past few decades. The progress made in this field invites further study of even smaller systems and at a larger scale, with tools that could be distributed more easily and made more widely available. Unfortunately, the fundamental laws of diffraction limit the minimum size of the focal spot of a laser beam, which makes particles smaller than a half-wavelength in diameter hard to trap and generally prevents an operator from discriminating between particles which are closer together than one half-wavelength. This precludes the optical manipulation of many closely-spaced nanoparticles and limits the resolution of optical-mechanical systems. Furthermore, manipulation using focused beams requires beam-forming or steering optics, which can be very bulky and expensive. To address these limitations in the system scalability of conventional optical trapping our lab has devised an alternative technique which utilizes near-field optics to move particles across a chip. Instead of focusing laser beams in the far-field, the optical near field of plasmonic resonators produces the necessary local optical intensity enhancement to overcome the restrictions of diffraction and manipulate particles at higher resolution. Closely-spaced resonators produce strong optical traps which can be addressed to mediate the hand-off of particles from one to the next in a conveyor-belt-like fashion. Here, we describe how to design and produce a conveyor belt using a gold surface patterned with plasmonic C-shaped resonators and how to operate it with polarized laser light to achieve super-resolution nanoparticle manipulation and transport. The nano-optical conveyor belt chip can be produced using lithography techniques and easily packaged and distributed.
- Subjects :
- Optics and Photonics
Materials science
Light
Optical Tweezers
General Chemical Engineering
Physics::Optics
Near and far field
Conveyor belt
General Biochemistry, Genetics and Molecular Biology
law.invention
Resonator
Engineering
law
Nanotechnology
Lithography
Plasmon
General Immunology and Microbiology
business.industry
General Neuroscience
Equipment Design
Lab-on-a-chip
Optical tweezers
Optoelectronics
Nanoparticles
Gold
business
Electron-beam lithography
Subjects
Details
- ISSN :
- 1940087X
- Issue :
- 102
- Database :
- OpenAIRE
- Journal :
- Journal of visualized experiments : JoVE
- Accession number :
- edsair.doi.dedup.....5bcf2a6ebb16c871e20adcd1121b1ea7