We introduce a general mapping for encoding quantum communication protocols involving pure states of multiple qubits, unitary transformations, and projective measurements into another set of protocols that employ coherent states of light in a superposition of optical modes, linear optics transformations and measurements with single-photon threshold detectors. This provides a general framework for transforming a wide class of protocols in quantum communication into a form in which they can be implemented with current technology. In particular, we apply the mapping to quantum communication complexity, providing general conditions under which quantum protocols can be implemented with coherent states and linear optics while retaining exponentia...
Quantum optics has proved a fertile field for experimental tests of quantum information science, fro...
We show that quantum computation circuits with coherent states as the logical qubits can be construc...
Quantum computing resources have been known to provide speed-ups in computational complexity in many...
I show that a simple multi-party communication task can be performed more efficiently with quantum c...
International audienceDemonstrating a quantum advantage with currently available experimental system...
Quantum communication offers long-term security especially, but not only, relevant to government and...
We show that quantum computation circuits using coherent states as the logical qubits can be constru...
We show that quantum computation circuits using coherent states as the logical qubits can be constru...
The interdisciplinary field of quantum communication and quantum information processing merges quant...
The work in this thesis can be divided into three parts. The first two parts deal with optical quant...
Despite being long regarded as merely an amusement for researchers, quantum cryptography has now bee...
Quantum communication holds the promise of creating disruptive technologies that will play an essent...
In this thesis, we study networks of entangled quantum optical systems at different degrees of compl...
A setup for discriminating between arbitrary two coherent states of a single light mode with the hig...
© 2014 American Physical Society. Quantum technology promises revolutionary advantages in informatio...
Quantum optics has proved a fertile field for experimental tests of quantum information science, fro...
We show that quantum computation circuits with coherent states as the logical qubits can be construc...
Quantum computing resources have been known to provide speed-ups in computational complexity in many...
I show that a simple multi-party communication task can be performed more efficiently with quantum c...
International audienceDemonstrating a quantum advantage with currently available experimental system...
Quantum communication offers long-term security especially, but not only, relevant to government and...
We show that quantum computation circuits using coherent states as the logical qubits can be constru...
We show that quantum computation circuits using coherent states as the logical qubits can be constru...
The interdisciplinary field of quantum communication and quantum information processing merges quant...
The work in this thesis can be divided into three parts. The first two parts deal with optical quant...
Despite being long regarded as merely an amusement for researchers, quantum cryptography has now bee...
Quantum communication holds the promise of creating disruptive technologies that will play an essent...
In this thesis, we study networks of entangled quantum optical systems at different degrees of compl...
A setup for discriminating between arbitrary two coherent states of a single light mode with the hig...
© 2014 American Physical Society. Quantum technology promises revolutionary advantages in informatio...
Quantum optics has proved a fertile field for experimental tests of quantum information science, fro...
We show that quantum computation circuits with coherent states as the logical qubits can be construc...
Quantum computing resources have been known to provide speed-ups in computational complexity in many...