Multiphoton quantum correlations are crucial for quantum information processing and quantum communication protocols in linear optical networks. For large-scale implementation of quantum information processing, such as quantum simulators, boson sampling or programmable quantum logic gates, a programmable functionality of a large multichannel network is required. In this thesis, we describe and demonstrate programmable quantum interference between multiple single-photon states in massively multichannel networks. \ud Using a theoretical analysis we first show that losses in optical networks, which are unavoidable in experiments, introduce new freedom, in that the functionality of the network, and thus also quantum interference in there, is pro...
Since its first observation, multiphoton interference has been largely implemented in different quan...
The experimental characterization of multi-photon quantum interference effects in optical networks i...
Multi-photon interference is central to photonic quantum information processing and quantum simulati...
Multiphoton quantum correlations are crucial for quantum information processing and quantum communic...
Light transport in opaque scattering media mixes the light across the large number of modes in the s...
We investigate two-photon quantum interference in an opaque scattering medium that intrinsically sup...
Summary form only given. Quantum optics experiments require ultimate control over the propagation of...
Wavefront shaping allows for ultimate control of light propagation in multiple-scattering media by a...
We study the random walk of multiple photons in a massively multichannel system. The network consist...
Nonclassical interference of photons lies at the heart of optical quantum information processing. He...
We describe a multimode passive linear optical network which emulates the two-photon number statisti...
Quantum mechanics implies that a single photon can be in the superposition of two distant spatial mo...
Fundamental quantum physics and quantum information science has found great experimental success wit...
Transport of information through a multimode optical fibre raises challenges when one wants to incre...
We theoretically investigate quantum interference of two single photons at a lossy asymmetric beam s...
Since its first observation, multiphoton interference has been largely implemented in different quan...
The experimental characterization of multi-photon quantum interference effects in optical networks i...
Multi-photon interference is central to photonic quantum information processing and quantum simulati...
Multiphoton quantum correlations are crucial for quantum information processing and quantum communic...
Light transport in opaque scattering media mixes the light across the large number of modes in the s...
We investigate two-photon quantum interference in an opaque scattering medium that intrinsically sup...
Summary form only given. Quantum optics experiments require ultimate control over the propagation of...
Wavefront shaping allows for ultimate control of light propagation in multiple-scattering media by a...
We study the random walk of multiple photons in a massively multichannel system. The network consist...
Nonclassical interference of photons lies at the heart of optical quantum information processing. He...
We describe a multimode passive linear optical network which emulates the two-photon number statisti...
Quantum mechanics implies that a single photon can be in the superposition of two distant spatial mo...
Fundamental quantum physics and quantum information science has found great experimental success wit...
Transport of information through a multimode optical fibre raises challenges when one wants to incre...
We theoretically investigate quantum interference of two single photons at a lossy asymmetric beam s...
Since its first observation, multiphoton interference has been largely implemented in different quan...
The experimental characterization of multi-photon quantum interference effects in optical networks i...
Multi-photon interference is central to photonic quantum information processing and quantum simulati...