Optical trapping and binding
Оптическое удержание и связывание
2013-01-09
SCID: 54.1/5my2gcab
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gradient-force traplight momentumoptical bindingoptical trappingoptical tweezers
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Abstract (AI)
The phenomenon of light's momentum was first observed in the laboratory at the beginning of the twentieth century, and its potential for manipulating microscopic particles was demonstrated by Ashkin some 70 years later. Since that initial demonstration, and the seminal 1986 paper where a single-beam gradient-force trap was realized, optical trapping has been exploited as both a rich example of physical phenomena and a powerful tool for sensitive measurement. This review outlines the underlying theory of optical traps, and explores many of the physical observations that have been made in such systems. These phenomena include 'optical binding', where trapped objects interact with one another through the trapping light field. We also discuss a number of the applications of 'optical tweezers' across the physical and life sciences, as well as covering some of the issues involved in constructing and using such a tool.
Key Findings
1
Optical binding occurs when trapped objects interact with one another through the trapping light field.
2
Optical trapping uses light’s momentum and gradient forces to manipulate microscopic particles, with single-beam traps established in 1986.
3
Optical traps provide a framework for studying physical phenomena and enable sensitive measurements.
4
Optical tweezers have applications across the physical and life sciences, alongside practical considerations for their construction and use.
Research Object
optically trapped microscopic particles and their interacting assemblies
Research Subject
the underlying theory, physical phenomena, and interparticle optical binding interactions in optical traps
Publication Details
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2013-01-09
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