Roadmap on structured light

Halina Rubinsztein‐Dunlop(University of Queensland), Andrew Forbes(University of the Witwatersrand), Michael Berry(Bristol Robotics Laboratory), Mark R. Dennis(Bristol Robotics Laboratory), Davıd L. Andrews(University of East Anglia), Masud Mansuripur(University of Arizona), Cornelia Denz(University of Münster), Christina Alpmann(University of Münster), Peter Banzer(Max Planck Institute for the Science of Light), Thomas Bauer(Max Planck Institute for the Science of Light), Ebrahim Karimi(Max Planck - University of Ottawa Centre for Extreme and Quantum Photonics), Lorenzo Marrucci(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), Miles J. Padgett(University of Glasgow), Monika Ritsch‐Marte(Universität Innsbruck), Natalia M. Litchinitser(University at Buffalo, State University of New York), N. P. Bigelow(University of Rochester), Carmelo Rosales‐Guzmán(University of the Witwatersrand), Antonella Belmonte(Universitat Politècnica de Catalunya), Juan P. Torres(Universitat Politècnica de Catalunya), Tyler W. Neely(University of Queensland), Mark Baker(University of Queensland), Reuven Gordon(University of Victoria), Alexander B. Stilgoe(University of Queensland), Jacquiline Romero(University of Queensland), A. G. White(Centre for Quantum Computation and Communication Technology), Robert Fickler(Max Planck - University of Ottawa Centre for Extreme and Quantum Photonics), Alan E. Willner(University of Southern California), Guodong Xie(University of Southern California), Benjamin McMorran(University of Oregon), Andrew M. Weiner(Purdue University West Lafayette)
Journal of Optics
November 25, 2016
Cited by 1,325Open Access
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Abstract

Structured light refers to the generation and application of custom light fields. As the tools and technology to create and detect structured light have evolved, steadily the applications have begun to emerge. This roadmap touches on the key fields within structured light from the


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