We present a new type of electromagnetic planar metamaterial that exhibit strong dispersion at a local minimum of losses and is believed to be the first metamaterial analog of electromagnetically induced transparency. We demonstrate that pulses propagating through such metamaterials experience considerable delay, whereas the thickness of the structure along the direction of wave propagation is much smaller than the wavelength, which allows successive stacking of multiple metamaterial slabs. This leads to a significant increase in the band of normal dispersion, as well as in transmission levels
Electromagnetically induced transparency (EIT) originates from quantum physics, where a narrow trans...
An analogy of electromagnetically induced transparency (EIT) based on all-dielectric metamaterial is...
International audienceWe report the experimental observation and the evidence of the analogue of ele...
We demonstrate theoretically that electromagnetically induced transparency can be achieved in metama...
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...
We present a planar design of a metamaterial exhibiting electromagnetically induced transparency tha...
We provide experimental evidence that an electromagnetic pulse can be significantly delayed with min...
Metamaterials are engineered materials composed of small electrical circuits producing novel interac...
Metamaterials are engineered materials composed of small electrical circuits producing novel interac...
An asymmetric metamaterial exhibiting an analog of double electromagnetically induced transparency (...
We report on a planar metamaterial, the resonant transmission frequency of which does not depend on ...
We show for the first time that a classical analogue of EIT can be realized in "zero thickness" plan...
Electromagnetically induced transparency is an optical phenomenon that is characterized by the elimi...
We numerically demonstrate a planar design of a metamaterial exhibiting electromagnetically induced ...
Electromagnetically induced transparency (EIT) originates from quantum physics, where a narrow trans...
An analogy of electromagnetically induced transparency (EIT) based on all-dielectric metamaterial is...
International audienceWe report the experimental observation and the evidence of the analogue of ele...
We demonstrate theoretically that electromagnetically induced transparency can be achieved in metama...
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...
We present a planar design of a metamaterial exhibiting electromagnetically induced transparency tha...
We provide experimental evidence that an electromagnetic pulse can be significantly delayed with min...
Metamaterials are engineered materials composed of small electrical circuits producing novel interac...
Metamaterials are engineered materials composed of small electrical circuits producing novel interac...
An asymmetric metamaterial exhibiting an analog of double electromagnetically induced transparency (...
We report on a planar metamaterial, the resonant transmission frequency of which does not depend on ...
We show for the first time that a classical analogue of EIT can be realized in "zero thickness" plan...
Electromagnetically induced transparency is an optical phenomenon that is characterized by the elimi...
We numerically demonstrate a planar design of a metamaterial exhibiting electromagnetically induced ...
Electromagnetically induced transparency (EIT) originates from quantum physics, where a narrow trans...
An analogy of electromagnetically induced transparency (EIT) based on all-dielectric metamaterial is...
International audienceWe report the experimental observation and the evidence of the analogue of ele...