Metasurfaces based on resonant nanophotonic structures have enabled innovative types of flat-optics devices that often outperform the capabilities of bulk components, yet these advances remain largely unexplored for quantum applications. We show that nonclassical multiphoton interferences can be achieved at the subwavelength scale in all-dielectric metasurfaces. We simultaneously image multiple projections of quantum states with a single metasurface, enabling a robust reconstruction of amplitude, phase, coherence, and entanglement of multiphoton polarization-encoded states. One- and two-photon states are reconstructed through nonlocal photon correlation measurements with polarization-insensitive click detectors positioned after the metasurf...
The subject of this thesis is focused on the investigation of interactions between quantum states of...
Metasurfaces consisting of nanoscale structures are underpinning new physical principles for the cre...
Metasurfaces are optically thin layers of subwavelength resonators that locally tailor the electroma...
©The Authors. Metasurfaces based on resonant nanophotonic structures have enabled innovative types o...
Measurements of quantum states of photons are conventionally performed with series of optical elemen...
We suggest and realize experimentally dielectric metasurfaces with high transmission efficiency for ...
We suggest and realize experimentally dielectric metasurfaces with high transmission efficiency for ...
We develop a concept of metasurface-assisted ghost imaging for non-local discrimination between a se...
Metasurfaces consisting of engineered dielectric or metallic structures provide unique solutions to ...
The control of photons represents a pillar for our modern technological society. The emerging field ...
Quantum entanglement is a key resource that can be exploited for a range of applications such as qua...
Quantum state engineering, the cornerstone of quantum photonic technologies, mainly relies on sponta...
Quantum entanglement is a key resource that can be exploited for a range of applications such as qua...
A metasurface is a planar structure that can be utilized to manipulate the amplitude, phase, and pol...
Metasurfaces, composed of artificial meta-atoms of subwavelength size, can support strong light–matt...
The subject of this thesis is focused on the investigation of interactions between quantum states of...
Metasurfaces consisting of nanoscale structures are underpinning new physical principles for the cre...
Metasurfaces are optically thin layers of subwavelength resonators that locally tailor the electroma...
©The Authors. Metasurfaces based on resonant nanophotonic structures have enabled innovative types o...
Measurements of quantum states of photons are conventionally performed with series of optical elemen...
We suggest and realize experimentally dielectric metasurfaces with high transmission efficiency for ...
We suggest and realize experimentally dielectric metasurfaces with high transmission efficiency for ...
We develop a concept of metasurface-assisted ghost imaging for non-local discrimination between a se...
Metasurfaces consisting of engineered dielectric or metallic structures provide unique solutions to ...
The control of photons represents a pillar for our modern technological society. The emerging field ...
Quantum entanglement is a key resource that can be exploited for a range of applications such as qua...
Quantum state engineering, the cornerstone of quantum photonic technologies, mainly relies on sponta...
Quantum entanglement is a key resource that can be exploited for a range of applications such as qua...
A metasurface is a planar structure that can be utilized to manipulate the amplitude, phase, and pol...
Metasurfaces, composed of artificial meta-atoms of subwavelength size, can support strong light–matt...
The subject of this thesis is focused on the investigation of interactions between quantum states of...
Metasurfaces consisting of nanoscale structures are underpinning new physical principles for the cre...
Metasurfaces are optically thin layers of subwavelength resonators that locally tailor the electroma...