This book provides a comprehensive study of the photonic spin hall effect (PSHE), covering its theoretical foundations, applications, and computational modeling using MATLAB. PSHE is a fundamental optical phenomenon that results from the spin-orbit interaction of light, analogous to the spin Hall effect. PSHE enables precise manipulation and control of light at the nanoscale, enabling applications in fields such as optical sensing and metrology, quantum photonics, optical communication systems, and spin-enabled imaging and microscopy, all of which are explored in the text. MATLAB-based numerical simulations play a crucial role in modeling and analyzing PSHE, providing insights into light-matter interactions such as surface plasmon-enhanced PSHE, weak measurements of PSHE, and PSHE in metamaterials. The book helps address existing knowledge gaps, presents current insights, and serves as a key resource for students, researchers, and engineers in optics, photonics, and quantum technologies, particularly those who are interested in PSHE’s potential for advancing next-generation optical systems.
This book provides a comprehensive study of the photonic spin hall effect (PSHE), covering its theoretical foundations, applications, and computational modeling using MATLAB. PSHE is a fundamental optical phenomenon that results from the spin-orbit interaction of light, analogous to the spin Hall effect. PSHE enables precise manipulation and control of light at the nanoscale, enabling applications in fields such as optical sensing and metrology, quantum photonics, optical communication systems, and spin-enabled imaging and microscopy, all of which are explored in the text. MATLAB-based numerical simulations play a crucial role in modeling and analyzing PSHE, providing insights into light-matter interactions such as surface plasmon-enhanced PSHE, weak measurements of PSHE, and PSHE in metamaterials. The book helps address existing knowledge gaps, presents current insights, and serves as a key resource for students, researchers, and engineers in optics, photonics, and quantum technologies, particularly those who are interested in PSHE’s potential for advancing next-generation optical systems.
Yogendra Kumar Prajapati
plasmonic sensing single photon manipulation spin-orbit interaction weak measurement Rytov-Vladimirskii-Berry phase plasmonic nanostructure optical metamaterials spin-entangled light source angular spectrum method plasmonic simulation