Electromagnetic metamaterials have emerged as a powerful tool to tailor the electromagnetic material properties and control wave propagation using artificial sub-wavelength structures. During the past fifteen years, metamaterials have been intensively studied over the electromagnetic spectrum (from microwave to visible), giving rise to extraordinary phenomena including negative refractive index, invisibility cloaking, sub-diffraction-limit focusing, perfect absorption, and numerous novel electromagnetic devices and optical components. The terahertz regime, between 0.3 THz and 10 THz, is of particular interest due to its appealing applications in imaging, chemical and biological sensing and security screening. Metamaterials foster the develo...
This book covers the theoretical background and experimental methods for engineers and physicist to ...
The terahertz (0.1 THz-10 THz) range represents a fast-evolving research and industrial field. The g...
Thesis advisor: Willie J. PadillaProgress in the field of metamaterials has started coming to a poin...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
Compared to the neighboring infrared and microwave regions, the terahertz regime is still in need of...
Metamaterials are artificial composites that acquire their electromagnetic properties from embedded ...
This doctorate thesis focuses on the design, fabrication and experiment of reconfigurable metamateri...
Metamaterials are a major class of artificially engineered electromagnetic (EM) composites that enab...
In recent years metamaterials have been extensively researched and show strong potential to improve ...
Scope and Method of Study: The objective of this study is to explore the fundamental physics in nove...
This doctorate thesis focuses on the design, fabrication and experiment of reconfigurable metamateri...
This thesis describes a method for terahertz (THz) modulation using active metamaterials. At optical...
The function of metamaterials targeted for operation at terahertz frequencies was investigated inclu...
The advent of metamaterials has revolutionized the ways to control electromagnetic waves. Through de...
Thesis (Ph.D.)--Boston UniversityElectromagnetic wave absorbers have been intensely investigated in ...
This book covers the theoretical background and experimental methods for engineers and physicist to ...
The terahertz (0.1 THz-10 THz) range represents a fast-evolving research and industrial field. The g...
Thesis advisor: Willie J. PadillaProgress in the field of metamaterials has started coming to a poin...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
Compared to the neighboring infrared and microwave regions, the terahertz regime is still in need of...
Metamaterials are artificial composites that acquire their electromagnetic properties from embedded ...
This doctorate thesis focuses on the design, fabrication and experiment of reconfigurable metamateri...
Metamaterials are a major class of artificially engineered electromagnetic (EM) composites that enab...
In recent years metamaterials have been extensively researched and show strong potential to improve ...
Scope and Method of Study: The objective of this study is to explore the fundamental physics in nove...
This doctorate thesis focuses on the design, fabrication and experiment of reconfigurable metamateri...
This thesis describes a method for terahertz (THz) modulation using active metamaterials. At optical...
The function of metamaterials targeted for operation at terahertz frequencies was investigated inclu...
The advent of metamaterials has revolutionized the ways to control electromagnetic waves. Through de...
Thesis (Ph.D.)--Boston UniversityElectromagnetic wave absorbers have been intensely investigated in ...
This book covers the theoretical background and experimental methods for engineers and physicist to ...
The terahertz (0.1 THz-10 THz) range represents a fast-evolving research and industrial field. The g...
Thesis advisor: Willie J. PadillaProgress in the field of metamaterials has started coming to a poin...