Non-classical light is both easily encoded with quantum information and robust against decoherence, making it a key resource that enables many quantum information applications including quantum computing, quantum communication, and quantum metrology. We present a wide range of experimental and theoretical research toward the generation, detection, characterization, and storage of non-classical states of light with an eye toward quantum information applications. To provide a basis for the rest of the work, we begin by discussing theoretically the role of photon number statistics in optical quantum information and the use of second-order optical coherence to characterize non-classical light. Building on that, we present an original tool for ...
Information processing with light is ubiquitous, from communication, metrology and imaging to comput...
AbstractIt is demonstrated that the recently developed technique of delocalized single photon additi...
The quantum state is the building block of every technology based on quantum mechanics. Its manipula...
Over the last sixty years, classical information theory has revolutionized the understanding of the ...
We study the effects of anomalous dispersion on the continuous-variable entanglement of EPR states (...
In this thesis we will theoretically investigate three potentially useful physical systems, after fi...
DoctorQuantum lights have been the essential sources for exploring fundamental quantum effects in qu...
We explore the concepts of coherence and entanglement as they apply to both the classical and quantu...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
Nonclassicality cannot be a single-observable property, since the statistics of any quantum observab...
Observation of the purely quantum mechanical effects of quasi-classical states is of utmost importan...
We present experimental work that investigates whether quantum information carried by light can be s...
In Sperling et al. [Phys. Rev. Lett. 118, 163602 (2017)], we introduced and applied a detector-indep...
The quantum theory of electromagnetic radiation predicts characteristic statistical fluctuations for...
Entangling quantum systems with different characteristics through the exchange of photons is a prere...
Information processing with light is ubiquitous, from communication, metrology and imaging to comput...
AbstractIt is demonstrated that the recently developed technique of delocalized single photon additi...
The quantum state is the building block of every technology based on quantum mechanics. Its manipula...
Over the last sixty years, classical information theory has revolutionized the understanding of the ...
We study the effects of anomalous dispersion on the continuous-variable entanglement of EPR states (...
In this thesis we will theoretically investigate three potentially useful physical systems, after fi...
DoctorQuantum lights have been the essential sources for exploring fundamental quantum effects in qu...
We explore the concepts of coherence and entanglement as they apply to both the classical and quantu...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
Nonclassicality cannot be a single-observable property, since the statistics of any quantum observab...
Observation of the purely quantum mechanical effects of quasi-classical states is of utmost importan...
We present experimental work that investigates whether quantum information carried by light can be s...
In Sperling et al. [Phys. Rev. Lett. 118, 163602 (2017)], we introduced and applied a detector-indep...
The quantum theory of electromagnetic radiation predicts characteristic statistical fluctuations for...
Entangling quantum systems with different characteristics through the exchange of photons is a prere...
Information processing with light is ubiquitous, from communication, metrology and imaging to comput...
AbstractIt is demonstrated that the recently developed technique of delocalized single photon additi...
The quantum state is the building block of every technology based on quantum mechanics. Its manipula...