Hyperuniform structures possess the ability to confine and drive light, although their fabrication is extremely challenging. Here we demonstrate that speckle patterns obtained by a superposition of randomly arranged sources of Bessel beams can be used to generate hyperunifrom scalar fields. By exploiting laser light tailored with a spatial filter, we experimentally produce (without requiring any computational power) a speckle pattern possessing maxima at locations corresponding to a hyperuniform distribution. By properly filtering out intensity fluctuation from the same speckle pattern, it is possible to retrieve an intensity profile satisfying the hyperuniformity requirements. Our findings are supported by extensive numerical simulations
Digitally controllable Gaussian speckle fields were experimentally generated by implementing binary ...
Waves are superoscillatory where their local phase gradient exceeds the maximum wavenumber in their ...
Publikation entstand im Rahmen der Veranstaltung: Photonics Ireland 2011, 7th – 9th September 2011,...
Hyperuniform structures possess the ability to confine and drive light, although their fabrication i...
Hyperuniform structures possess the ability to confine and drive light, although their fabrication i...
Hyperuniform structures possess the ability to confine and drive light, although their fabrication i...
Hyperuniform structures possess the ability to confine and drive light, although their fabrication i...
Hyperuniform structures possess the ability to confine and drive light, although their fabrication i...
Hyperuniform structures possess the ability to confine and drive light, although their fabrication i...
In this dissertation, a methodology for experimentally creating and controlling random light in free...
Cataloged from PDF version of article.Current optical manipulation techniques rely on carefully engi...
Hyperuniform geometries feature correlated disordered topologies which follow from a tailored k-spac...
Speckles are random light fields that share some universal statistical properties. Because of this, ...
Speckle patterns have usually been obtained by using ground glass as random diffusers. Liquid-crysta...
A speckle pattern is a quasi-random interference pattern which typically emerges when lasers are use...
Digitally controllable Gaussian speckle fields were experimentally generated by implementing binary ...
Waves are superoscillatory where their local phase gradient exceeds the maximum wavenumber in their ...
Publikation entstand im Rahmen der Veranstaltung: Photonics Ireland 2011, 7th – 9th September 2011,...
Hyperuniform structures possess the ability to confine and drive light, although their fabrication i...
Hyperuniform structures possess the ability to confine and drive light, although their fabrication i...
Hyperuniform structures possess the ability to confine and drive light, although their fabrication i...
Hyperuniform structures possess the ability to confine and drive light, although their fabrication i...
Hyperuniform structures possess the ability to confine and drive light, although their fabrication i...
Hyperuniform structures possess the ability to confine and drive light, although their fabrication i...
In this dissertation, a methodology for experimentally creating and controlling random light in free...
Cataloged from PDF version of article.Current optical manipulation techniques rely on carefully engi...
Hyperuniform geometries feature correlated disordered topologies which follow from a tailored k-spac...
Speckles are random light fields that share some universal statistical properties. Because of this, ...
Speckle patterns have usually been obtained by using ground glass as random diffusers. Liquid-crysta...
A speckle pattern is a quasi-random interference pattern which typically emerges when lasers are use...
Digitally controllable Gaussian speckle fields were experimentally generated by implementing binary ...
Waves are superoscillatory where their local phase gradient exceeds the maximum wavenumber in their ...
Publikation entstand im Rahmen der Veranstaltung: Photonics Ireland 2011, 7th – 9th September 2011,...