Quantum field theory predicts that a spatially homogeneous but temporally varying medium will excite photon pairs out of the vacuum state. However, this important theoretical prediction lacks experimental verification due to the difficulty in attaining the required nonadiabatic and large amplitude changes in the medium. Recent work has shown that in epsilon-near-zero (ENZ) materials it is possible to optically induce changes of the refractive index of the order of unity, in femtosecond time scales. By studying the quantum field theory of a spatially homogeneous, time-varying ENZ medium, we theoretically predict photon-pair production that is up to several orders of magnitude larger than in non-ENZ time-varying materials. We also find that w...
The conversion of a photon’s frequency has long been a key application area of nonlinear optics. It ...
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...
Quantum field theory predicts that a spatially homogeneous but temporally varying medium will excite...
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...
Materials with a spatially uniform but temporally varying optical response have applications ranging...
The conversion of a photon's frequency has long been a key application area of nonlinear optics. It ...
The conversion of a photon's frequency has long been a key application area of nonlinear optics. It ...
The conversion of a photon's frequency has long been a key application area of nonlinear optics. It ...
The ultrafast changes of material properties induced by short laser pulses can lead to a frequency s...
The conversion of a photon’s frequency has long been a key application area of nonlinear optics. It ...
Materials with a spatially uniform but temporally varying optical response have applications ranging...
The conversion of a photon’s frequency has long been a key application area of nonlinear optics. It ...
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...
Quantum field theory predicts that a spatially homogeneous but temporally varying medium will excite...
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...
Materials with a spatially uniform but temporally varying optical response have applications ranging...
The conversion of a photon's frequency has long been a key application area of nonlinear optics. It ...
The conversion of a photon's frequency has long been a key application area of nonlinear optics. It ...
The conversion of a photon's frequency has long been a key application area of nonlinear optics. It ...
The ultrafast changes of material properties induced by short laser pulses can lead to a frequency s...
The conversion of a photon’s frequency has long been a key application area of nonlinear optics. It ...
Materials with a spatially uniform but temporally varying optical response have applications ranging...
The conversion of a photon’s frequency has long been a key application area of nonlinear optics. It ...
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...