This book mainly focuses on the study of steering electromagnetic fields in near-field and far-field contexts involving plasmonic structures. It also offers a new approach to achieving full control of optical polarizations and potentially boosting the development in photonic information processing. A new in-plane phase modulation method is proposed and described, by means of which a series of optical beams were realized with nanostructures in metal surfaces, such as a plasmonic Airy beam, broad band focusing beam, and demultiplexing, collimated beam, as well as an optical orbital angular momentum (OAM) beam. Further, the book presents a plasmonic polarization generator, which can reconfigure an input polarization to all kinds of states simultaneously.
Les mer
A new in-plane phase modulation method is proposed and described, by means of which a series of optical beams were realized with nanostructures in metal surfaces, such as a plasmonic Airy beam, broad band focusing beam, and demultiplexing, collimated beam, as well as an optical orbital angular momentum (OAM) beam.
Les mer
Introduction.- Basic experimental research on surface plasmon polariton.- The principle of non-perfectly-matched Bragg diffraction and the realization of plasmonic Airy beam.- Steering surface plasmon polariton on metal surface with non-perfectly-matched Bragg diffraction.- Modulation far-field radiation with plasmonic structure.- Summary.
Les mer
This book mainly focuses on the study of steering electromagnetic fields in near-field and far-field contexts involving plasmonic structures. It also offers a new approach to achieving full control of optical polarizations and potentially boosting the development in photonic information processing. A new in-plane phase modulation method is proposed and described, by means of which a series of optical beams were realized with nanostructures in metal surfaces, such as a plasmonic Airy beam, broad band focusing beam, and demultiplexing, collimated beam, as well as an optical orbital angular momentum (OAM) beam. Further, the book presents a plasmonic polarization generator, which can reconfigure an input polarization to all kinds of states simultaneously.
Les mer
Nominated as an outstanding thesis by Nanjing University Provides an entirely new phase modulation method using non-perfectly matched, Bragg diffraction to manipulate the surface plasmon waves Demonstrates a well-routed polarization generator by achieving simultaneous control of light polarization and phase by means of plasmonic near-field interference Includes supplementary material: sn.pub/extras Includes supplementary material: sn.pub/extras
Les mer
Produktdetaljer
ISBN
9789811046629
Publisert
2017-06-07
Utgiver
Vendor
Springer Verlag, Singapore
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Research, P, 06
Språk
Product language
Engelsk
Format
Product format
Innbundet
Forfatter