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Tighter spots of light with superposed orbital angular momentum beams

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arxiv 1606.00244 v1 pith:76XA656B submitted 2016-06-01 physics.optics

Tighter spots of light with superposed orbital angular momentum beams

classification physics.optics
keywords beamsfeaturefocusinglightsizesangularapplicationsbeam
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The possibility of focusing light to an ever tighter spot has important implications for many applications and fields of optics research, such as nano-optics and plasmonics, laser-scanning microscopy, optical data storage and many more. The size of lateral features of the field at the focus depends on several parameters, including the numerical aperture of the focusing system, but also the wavelength and polarization, phase and intensity distribution of the input beam. Here, we study the smallest achievable focal feature sizes of coherent superpositions of two co-propagating beams carrying opposite orbital angular momentum. We investigate the feature sizes for this class of beams not only in the scalar limit, but also use a fully vectorial treatment to discuss the case of tight focusing. Both our numerical simulations and our experimental results confirm that lateral feature sizes considerably smaller than those of a tightly focused Gaussian light beam can be observed. These findings may pave the way for improving the resolution of imaging systems or may find applications in nano-optics experiments.

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