Quantum entanglement is a pure quantum mechanical phenomena with no classical counterpart. The strong non locality of multipartite entangled states makes it suitable for application of quantum mechanics towards quantum computing, quantum key distribution and quantum interferometry. Many methods have been proposed for the generation of scalable multipartite entangled states in the frequency domain and by time-bin multiplexing. However, these are not suitable for long distance quantum communication. To build a long distance quantum network, we need a spatially separable multipartite entangled system. In this thesis, we focus on the use of a quantum interferometer, known as the SU(1,1) interferometer formed using a two mode squeezed quantum st...
Over the last twenty years the field of quantum information processing (QIP) has attracted the atten...
The cluster states and Greenberger-Horne-Zeilinger (GHZ) states are two different types of multipart...
Single-photon interferometry has been used to simulate quantum computations. Its use has been limite...
Empirical thesis.Bibliography: pages 137-145.1. Introduction -- 2. Spontaneous parametric down conve...
We show that the effect of measurement back-action results in the generation of multiple many-body s...
Quantum entanglement is a fascinating physical resource that is central to the field of quantum info...
Quantum computers promise ultrafast performance for certain tasks. Experimentally appealing, measure...
High-bit-rate long-distance quantum communication is a proposed technology for future communication ...
Quantum entanglement exhibits various interesting features that emerge only in high-dimensional syst...
Entanglement drives nearly all proposed quantum information technologies. The suppression of the unc...
Optical entanglement is a key requirement for many quantum communication protocols. Conventionally, ...
The use of non-classical states of light, such as squeezed states, have allowed the exploration of q...
The scope of this thesis is to explore different ways of bringing the phenomenon of quantum entangle...
We report the experimental realization and characterization of one 60-mode copy and of two 30-mode c...
In this thesis we will theoretically investigate three potentially useful physical systems, after fi...
Over the last twenty years the field of quantum information processing (QIP) has attracted the atten...
The cluster states and Greenberger-Horne-Zeilinger (GHZ) states are two different types of multipart...
Single-photon interferometry has been used to simulate quantum computations. Its use has been limite...
Empirical thesis.Bibliography: pages 137-145.1. Introduction -- 2. Spontaneous parametric down conve...
We show that the effect of measurement back-action results in the generation of multiple many-body s...
Quantum entanglement is a fascinating physical resource that is central to the field of quantum info...
Quantum computers promise ultrafast performance for certain tasks. Experimentally appealing, measure...
High-bit-rate long-distance quantum communication is a proposed technology for future communication ...
Quantum entanglement exhibits various interesting features that emerge only in high-dimensional syst...
Entanglement drives nearly all proposed quantum information technologies. The suppression of the unc...
Optical entanglement is a key requirement for many quantum communication protocols. Conventionally, ...
The use of non-classical states of light, such as squeezed states, have allowed the exploration of q...
The scope of this thesis is to explore different ways of bringing the phenomenon of quantum entangle...
We report the experimental realization and characterization of one 60-mode copy and of two 30-mode c...
In this thesis we will theoretically investigate three potentially useful physical systems, after fi...
Over the last twenty years the field of quantum information processing (QIP) has attracted the atten...
The cluster states and Greenberger-Horne-Zeilinger (GHZ) states are two different types of multipart...
Single-photon interferometry has been used to simulate quantum computations. Its use has been limite...