Restricted Access. An open-access version is available at arXiv.org (one of the alternative locations)We demonstrate a method of obtaining, from coherent light, tunable classical light where the temporal characteristics and photon number distribution can be controlled electronically. The tunability of the temporal coherence is shown through second-order correlation (G 2(τ)) measurements, both in the continuous intensity measurement as well as in the photon counting regime. The generation of desired classical photon number distributions is illustrated by creating two light sources —one emitting a thermal state and the other a specific classical non-Gaussian state. Such tailored light sources with emission characteristics quite different from...
In this thesis, we develop new methods to generate and analyze non-classical states of the light for...
The main purpose of this dissertation is to suggest and investigate various schemes for quantum info...
Quantum information science attempts to exploit capabilities from the quantum realm to accomplish ta...
Quantum optics experiments frequently involve interfering single photons and coherent states. In the...
Correlation measurement or calculation is typically used to classify the antibunched, bunched, or su...
Production and analysis of non-Gaussian radiation fields has evinced a lot of attention recently. S...
Non-classical light is both easily encoded with quantum information and robust against decoherence, ...
Non-classical light sources are often used in quantum cryptography and other fields. To obtain adjus...
We address realistic schemes for the generation of non-Gaussian states of light based on conditional...
We show that the temporal correlations between two light beams arising from a broadband thermal-like...
We demonstrate a method to transmute classical light into a quantum state without invoking any nonli...
We report phase-programmable Gaussian boson sampling (GBS) which produces up to 113 photon detection...
Single-photon sources are critical optical components in quantum communication, in particular, for s...
The quantum theory of electromagnetic radiation predicts characteristic statistical fluctuations for...
Imaging with non-classical photons allows to bypass the Rayleigh resolution limit and classical shot...
In this thesis, we develop new methods to generate and analyze non-classical states of the light for...
The main purpose of this dissertation is to suggest and investigate various schemes for quantum info...
Quantum information science attempts to exploit capabilities from the quantum realm to accomplish ta...
Quantum optics experiments frequently involve interfering single photons and coherent states. In the...
Correlation measurement or calculation is typically used to classify the antibunched, bunched, or su...
Production and analysis of non-Gaussian radiation fields has evinced a lot of attention recently. S...
Non-classical light is both easily encoded with quantum information and robust against decoherence, ...
Non-classical light sources are often used in quantum cryptography and other fields. To obtain adjus...
We address realistic schemes for the generation of non-Gaussian states of light based on conditional...
We show that the temporal correlations between two light beams arising from a broadband thermal-like...
We demonstrate a method to transmute classical light into a quantum state without invoking any nonli...
We report phase-programmable Gaussian boson sampling (GBS) which produces up to 113 photon detection...
Single-photon sources are critical optical components in quantum communication, in particular, for s...
The quantum theory of electromagnetic radiation predicts characteristic statistical fluctuations for...
Imaging with non-classical photons allows to bypass the Rayleigh resolution limit and classical shot...
In this thesis, we develop new methods to generate and analyze non-classical states of the light for...
The main purpose of this dissertation is to suggest and investigate various schemes for quantum info...
Quantum information science attempts to exploit capabilities from the quantum realm to accomplish ta...