The information-carrying capacity of a single photon can be vastly expanded by exploiting its multiple degrees of freedom: spatial, temporal, and polarization. Although multiple qubits can be encoded per photon, to date only two-qubit single-photon quantum operations have been realized. Here, we report an experimental demonstration of three-qubit single-photon, linear, deterministic quantum gates that exploit photon polarization and the two-dimensional spatial-parity-symmetry of the transverse single-photon field. These gates are implemented using a polarization-sensitive spatial light modulator that provides a robust, non-interferometric, versatile platform for implementing controlled unitary gates. Polarization here represents the control...
Encoding many qubits in different degrees of freedom (DOFs) of single photons is one of the routes t...
We experimentally demonstrate linear single-photon three-qubit deterministic controlled-NOT (CNOT) g...
We discuss progress towards implementing two qubit quantum gates in optics. We review the operation ...
The information-carrying capacity of a single photon can be vastly expanded by exploiting its multip...
Increasing the information-carrying capacity of a single photon may be achieved by utilizing multipl...
The information-carrying capacity of a single photon can be vastly expanded by exploiting its multip...
We experimentally demonstrate linear, deterministic, single-photon three-qubit quantum gates impleme...
Advancing quantum information processing is predicated on the preparation of ever-larger multiqubit ...
Several schemes have been proposed to extend quantum key distribution protocols aimed at improving t...
We suggest and demonstrate a novel source of two-photon multipartite entangled states which exploits...
Thesis Supervisor: Franco N. C. Wong Title: Senior Research Scientist Thesis Supervisor: Vladan Vu...
We propose a scheme to implement a single-mode quantum filter, which selectively eliminates the one-...
We present an experimental proof-of-principle for the generation and detection of pure two-qubit sta...
Abstract. We present experimental results of deterministic linear optical Controlled-NOT and SWAP ga...
We discuss techniques for producing, manipulating, and measuring qubits encoded optically as vacuum-...
Encoding many qubits in different degrees of freedom (DOFs) of single photons is one of the routes t...
We experimentally demonstrate linear single-photon three-qubit deterministic controlled-NOT (CNOT) g...
We discuss progress towards implementing two qubit quantum gates in optics. We review the operation ...
The information-carrying capacity of a single photon can be vastly expanded by exploiting its multip...
Increasing the information-carrying capacity of a single photon may be achieved by utilizing multipl...
The information-carrying capacity of a single photon can be vastly expanded by exploiting its multip...
We experimentally demonstrate linear, deterministic, single-photon three-qubit quantum gates impleme...
Advancing quantum information processing is predicated on the preparation of ever-larger multiqubit ...
Several schemes have been proposed to extend quantum key distribution protocols aimed at improving t...
We suggest and demonstrate a novel source of two-photon multipartite entangled states which exploits...
Thesis Supervisor: Franco N. C. Wong Title: Senior Research Scientist Thesis Supervisor: Vladan Vu...
We propose a scheme to implement a single-mode quantum filter, which selectively eliminates the one-...
We present an experimental proof-of-principle for the generation and detection of pure two-qubit sta...
Abstract. We present experimental results of deterministic linear optical Controlled-NOT and SWAP ga...
We discuss techniques for producing, manipulating, and measuring qubits encoded optically as vacuum-...
Encoding many qubits in different degrees of freedom (DOFs) of single photons is one of the routes t...
We experimentally demonstrate linear single-photon three-qubit deterministic controlled-NOT (CNOT) g...
We discuss progress towards implementing two qubit quantum gates in optics. We review the operation ...