Here, we present recent developments in the field of quantum imaging focusing on the high dimensionality aspects of single and biphoton imaging. We discuss some systems that have a “quantum advantage” over classical counterparts. We highlight some recent experiments in single-photon image discrimination, large alphabet quantum key distribution and image buffering
The resources needed to conventionally characterize a quantum system are overwhelmingly large for hi...
In this thesis I discuss the experimental demonstration of quantum-enhanced imaging and sensing sche...
In this paper we report an experimental realization of an ancilla-free 1→2 phase-covariant quantum c...
Here, we present recent developments in the field of quantum imaging focusing on the high dimensiona...
Compressive sensing utilizes sparsity to realize efficient image reconstruction. It is a valuable pr...
High-dimensional Hilbert spaces used for quantum communication channels offer the possibility of lar...
We can encode an image from an orthogonal basis set onto a single photon from a downconverted pair v...
Quantum buffers will be an essential part of quantum-information networks. A buffer that can preserv...
A triggering device sensitive to a single photon is discussed. It is based on a balanced quantum non...
The entanglement of squeezed light beams is critical for quantum optical applications, but has so fa...
We study transverse spatial coherence of approximately localized single-photon states. We demonstrat...
Quantum optics and classical optics are linked in ways that are becoming apparent as a result of num...
We demonstrate how to efficiently implement extremely high-dimensional compressive imaging of a bi-p...
We demonstrate a simple experimental method for creating entangled qudits. Using transverse-momentum...
We present a measurement protocol for discriminating between two different quantum states of a qubit...
The resources needed to conventionally characterize a quantum system are overwhelmingly large for hi...
In this thesis I discuss the experimental demonstration of quantum-enhanced imaging and sensing sche...
In this paper we report an experimental realization of an ancilla-free 1→2 phase-covariant quantum c...
Here, we present recent developments in the field of quantum imaging focusing on the high dimensiona...
Compressive sensing utilizes sparsity to realize efficient image reconstruction. It is a valuable pr...
High-dimensional Hilbert spaces used for quantum communication channels offer the possibility of lar...
We can encode an image from an orthogonal basis set onto a single photon from a downconverted pair v...
Quantum buffers will be an essential part of quantum-information networks. A buffer that can preserv...
A triggering device sensitive to a single photon is discussed. It is based on a balanced quantum non...
The entanglement of squeezed light beams is critical for quantum optical applications, but has so fa...
We study transverse spatial coherence of approximately localized single-photon states. We demonstrat...
Quantum optics and classical optics are linked in ways that are becoming apparent as a result of num...
We demonstrate how to efficiently implement extremely high-dimensional compressive imaging of a bi-p...
We demonstrate a simple experimental method for creating entangled qudits. Using transverse-momentum...
We present a measurement protocol for discriminating between two different quantum states of a qubit...
The resources needed to conventionally characterize a quantum system are overwhelmingly large for hi...
In this thesis I discuss the experimental demonstration of quantum-enhanced imaging and sensing sche...
In this paper we report an experimental realization of an ancilla-free 1→2 phase-covariant quantum c...