Materials with a spatially uniform but temporally varying optical response have applications ranging from magnetic field-free optical isolators to fundamental studies of quantum field theories. However, these effects typically become relevant only for time variations oscillating at optical frequencies, thus presenting a significant hurdle that severely limits the realization of such conditions. Here we present a thin-film material with a permittivity that pulsates (uniformly in space) at optical frequencies and realizes a time-reversing medium of the form originally proposed by Pendry [Science 322, 71 (2008)]. We use an optically pumped, 500 nm thick film of epsilon-near-zero (ENZ) material based on Al-doped zinc oxide. An incident probe be...
The ultrafast changes of material properties induced by short laser pulses can lead to a frequency s...
Novel materials, with enhanced light–matter interaction capabilities, play an essential role in achi...
New propagation regimes for light arise from the ability to tune the dielectric permittivity to extr...
Materials with a spatially uniform but temporally varying optical response have applications ranging...
Materials with a spatially uniform but temporally varying optical response have applications ranging...
Materials with a spatially uniform but temporally varying optical response have applications ranging...
Since coining the term metamaterial, tailoring electromagnetic properties of media has been a stimul...
Since coining the term metamaterial, tailoring electromagnetic properties of media has been a stimul...
The ultrafast changes of material properties induced by short laser pulses can lead to a frequency s...
Time-varying metasurfaces are emerging as a powerful instrument for the dynamical control of the ele...
Time-varying metasurfaces are emerging as a powerful instrument for the dynamical control of the ele...
Quantum field theory predicts that a spatially homogeneous but temporally varying medium will excite...
Quantum field theory predicts that a spatially homogeneous but temporally varying medium will excite...
Time-varying metasurfaces are emerging as a powerful instrument for the dynamical control of the ele...
Time-varying metasurfaces are emerging as a powerful instrument for the dynamical control of the ele...
The ultrafast changes of material properties induced by short laser pulses can lead to a frequency s...
Novel materials, with enhanced light–matter interaction capabilities, play an essential role in achi...
New propagation regimes for light arise from the ability to tune the dielectric permittivity to extr...
Materials with a spatially uniform but temporally varying optical response have applications ranging...
Materials with a spatially uniform but temporally varying optical response have applications ranging...
Materials with a spatially uniform but temporally varying optical response have applications ranging...
Since coining the term metamaterial, tailoring electromagnetic properties of media has been a stimul...
Since coining the term metamaterial, tailoring electromagnetic properties of media has been a stimul...
The ultrafast changes of material properties induced by short laser pulses can lead to a frequency s...
Time-varying metasurfaces are emerging as a powerful instrument for the dynamical control of the ele...
Time-varying metasurfaces are emerging as a powerful instrument for the dynamical control of the ele...
Quantum field theory predicts that a spatially homogeneous but temporally varying medium will excite...
Quantum field theory predicts that a spatially homogeneous but temporally varying medium will excite...
Time-varying metasurfaces are emerging as a powerful instrument for the dynamical control of the ele...
Time-varying metasurfaces are emerging as a powerful instrument for the dynamical control of the ele...
The ultrafast changes of material properties induced by short laser pulses can lead to a frequency s...
Novel materials, with enhanced light–matter interaction capabilities, play an essential role in achi...
New propagation regimes for light arise from the ability to tune the dielectric permittivity to extr...