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and the complex OAM spectr...Figure 12.27 (a) The concept of the turbulence compensation utilizing invers...Figure 12.28 (a1–a2) The normalized transmission intensity matrices and (b) ...Figure 12.29 (a) Concept diagram of transmitting each data channel on a comb...Figure 12.30 Displacement‐induced channel crosstalk under various horizontal...Figure 12.31 The concept of using MIMO DSP equalization for crosstalk mitiga...Figure 12.32 Recovered constellations of 20 Gbit/s QPSK signal in each of th...Figure 12.33 The concept of receiving signal and pilot tone using a free spa...Figure 12.34 Concept of mixing OAM pilot tones and signal beams to achieve t...Figure 12.35 EVM performance for two multiplexed OAM channels under differen...Figure 12.36 Challenges of different scenarios in OAM‐multiplexed FSO airbor...Figure 12.37 (a) Scheme of displacement tracking using Gaussian/OAM beam‐bas...Figure 12.38 Concept of a free-space optical communication link between an u...Figure 12.39 (a) Schematic diagram of different locations where the UAV hove...Figure 12.40 Concept of an OAM‐multiplexed FSO link between a ground transmi...Figure 12.41 (a) Recovered QPSK constellations at transmitted power of 10 dB...Figure 12.42 Challenges of different scenarios in underwater FSO communicati...Figure 12.43 (a) Intensity profiles of OAM beams under various channel condi...Figure 12.44 Experimental setup of a 40‐Gbit/s OAM multiplexed underwater li...Figure 12.45 (a) Concept of on–off‐keying (OOK) modulation. Eye diagram for...Figure 12.46 Measured BER curves of OAM channel = +1 and = +...

      13 Chapter 13Figure 13.1 Electric and magnetic field magnitudes normalized to the maximum...Figure 13.2 General concept of chirality characterization of nanoparticles b...Figure 13.3 Helicity density at the z = 0 plane of an ARPB propagating along...Figure 13.4 Schematic of photoinduced force microscopy [6].Figure 13.5 An example of setup for generation of a large magnetic to electr...Figure 13.6 Local magnetic field enhancement F H (first column of the plot) a...Figure 13.7 Left: Schematic of the PiFM that is used in our experiment; midd...Figure 13.8 (a) Measured force map of the Si truncated cone under APB illumi...Figure 13.9 (a) Simplified model of a photoinduced force microscope, where t...Figure 13.10 Differential force exerted on the tip of the probe in a PiFM wh...

      14 Chapter 14Figure 14.1 Phase and intensity profiles of Laguerre–Gauss modes. (a) Helica...Figure 14.2 Illustration of spontaneous parametric downconversion in a nonli...Figure 14.3 Detection matrix showing the correlation among different OAM sta...Figure 14.4 Generation of the helical beam with transmissive optics. (a) Pro...Figure 14.5 Generation and detection of structured light with SLMs. (a) Heli...Figure 14.6 Concept of alignment‐free QKD. (a) Alice and Bob (depicted as tw...Figure 14.7 Experimental high‐dimensional QKD. (a) Setup used by Bouchard et...Figure 14.8 Quantum walk in the spin–orbit space. (a) Schematic representati...Figure 14.9 Quantum walk on a cyclic graph. (a) Intensity plot of an optical...Figure 14.10 Quantum walk on a square lattice. (a) Position eigenstates are ...Figure 14.11 Bulk measurement of topological invariants. (a) Examples of cur...

      Guide

      1  Cover Page

      2  Series Page

      3  Title Page

      4  Copyright Page

      5  Dedication

      6  About the Editors

      7  List of Contributors

      8  Preface

      9  Table of Contents

      10  Begin Reading

      11  Index

      12  IEEE PRESS SERIES ON ELECTROMAGNETIC WAVE THEORY

      13  WILEY END USER LICENSE AGREEMENT

      Pages

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      2  iii

      3  iv

      4  v

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