We numerically demonstrate a planar design of a metamaterial exhibiting electromagnetically induced transparency at gigahertz frequencies. The design is based on the coupling of two oppositely oriented semi split-rings in the same plane. A very large transmission contrast of about 60 dB between the peak of the EIT window and the dips of the transmission gaps is calculated. An extremely large group index associated with the resonant response in the transmission window is demonstrated, rendering the design suitable for slow light applications
We experimentally demonstrated a controllable electromagnetically induced transparency (EIT)-like sp...
Recent studies on the coupling effects between constituent elements of metamaterials have opened up ...
Electromagnetically induced transparency (EIT) originates from quantum physics, where a narrow trans...
We report on our experimental work concerning a planar metamaterial exhibiting classical electromagn...
We report on our experimental work concerning a planar metamaterial exhibiting classical electromagn...
An asymmetric metamaterial exhibiting an analog of double electromagnetically induced transparency (...
We report on our experimental work concerning a planar metamaterial exhibiting classical electromagn...
Over the past years, the classical analog of the electromagnetically-induced transparency (EIT) phen...
International audienceWe report the experimental observation and the evidence of the analogue of ele...
Electromagnetically induced transparency is an optical phenomenon that is characterized by the elimi...
Metamaterials are engineered materials composed of small electrical circuits producing novel interac...
We present a planar design of a metamaterial exhibiting electromagnetically induced transparency tha...
In this study, the classical analog of single and dual-band electromagnetically induced transparency...
We experimentally demonstrated a controllable electromagnetically induced transparency (EIT)-like sp...
We report on a planar metamaterial, the resonant transmission frequency of which does not depend on ...
We experimentally demonstrated a controllable electromagnetically induced transparency (EIT)-like sp...
Recent studies on the coupling effects between constituent elements of metamaterials have opened up ...
Electromagnetically induced transparency (EIT) originates from quantum physics, where a narrow trans...
We report on our experimental work concerning a planar metamaterial exhibiting classical electromagn...
We report on our experimental work concerning a planar metamaterial exhibiting classical electromagn...
An asymmetric metamaterial exhibiting an analog of double electromagnetically induced transparency (...
We report on our experimental work concerning a planar metamaterial exhibiting classical electromagn...
Over the past years, the classical analog of the electromagnetically-induced transparency (EIT) phen...
International audienceWe report the experimental observation and the evidence of the analogue of ele...
Electromagnetically induced transparency is an optical phenomenon that is characterized by the elimi...
Metamaterials are engineered materials composed of small electrical circuits producing novel interac...
We present a planar design of a metamaterial exhibiting electromagnetically induced transparency tha...
In this study, the classical analog of single and dual-band electromagnetically induced transparency...
We experimentally demonstrated a controllable electromagnetically induced transparency (EIT)-like sp...
We report on a planar metamaterial, the resonant transmission frequency of which does not depend on ...
We experimentally demonstrated a controllable electromagnetically induced transparency (EIT)-like sp...
Recent studies on the coupling effects between constituent elements of metamaterials have opened up ...
Electromagnetically induced transparency (EIT) originates from quantum physics, where a narrow trans...