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20192021
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quant-ph2021

Lost photon enhances superresolution

A. Mikhalychev, P. Novik, I. Karuseichyk +3

Quantum imaging can beat classical resolution limits, imposed by diffraction of light. In particular, it is known that one can reduce the image blurring and increase the achievable…

quant-ph2020

Optimal correlation order in super-resolution optical fluctuation microscopy

S. Vlasenko, A. B. Mikhalychev, I. L. Karuseichyk +3

Here, we show that, contrary to the common opinion, the super-resolution optical fluctuation microscopy might not lead to ideally infinite super-resolution enhancement with increas…

quant-ph2019

Reconstructing compound objects by quantum imaging with higher-order correlation functions

A. B. Mikhalychev, B. Bessire, I. L. Karuseichyk +6

Quantum imaging has a potential of enhancing precision of the object reconstruction by using quantum correlations of the imaging field. This is especially important for imaging req…

quant-ph2019

Design of the coherent diffusive photon gun for generating non-classical states

Matthew Thornton, Anton Sakovich, Alexander Mikhalychev +4

We suggest and discuss a concept of deterministic integrated source of non-classical light based on the coherent diffusive photonics, a coherent light flow in a system of dissipati…

quant-ph2019

Quantum noise radar: superresolution with quantum antennas by accessing spatiotemporal correlations

I. Peshko, D. Mogilevtsev, I. Karuseichyk +4

We suggest overcoming the "Rayleigh catastrophe" and reaching superresolution for imaging with both spatially and temporally-correlated field of a superradiant quantum antenna. Con…