Optical channels, such as fibres or free-space links, are ubiquitous in today's telecommunication networks. They rely on the electromagnetic field associated with photons to carry information from one point to another in space. A complete physical model of these channels must necessarily take quantum effects into account to determine their ultimate performances. Single-mode, phase-insensitive bosonic Gaussian channels have been extensively studied over past decades, given their importance for practical applications. In spite of this, a long-standing unsolved conjecture on the optimality of Gaussian encodings has prevented finding their classical communication capacity. Here, this conjecture is solved by proving that the vacuum state achieve...
Entanglement is a valuable quantum resource in quantum information processing. In classical communic...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
We investigate the capacity of bosonic quantum channels for the transmission of quantum information....
Optical channels, such as fibers or free-space links, are ubiquitous in today's telecommunication n...
Optical channels, such as fibers or free-space links, are ubiquitous in today's telecommunication ne...
We prove that a strong converse theorem holds for the classical capacity of all phase-insensitive bo...
We prove that a strong converse theorem holds for the classical capacity of all phase-insensitive bo...
Thesis Supervisor: Jeffrey H. Shapiro Title: Julius A. Stratton Professor of Electrical Engineering...
Research in the past decade has established capacity theorems for point-to-point bosonic channels wi...
In this thesis we study the information transmission through Gaussian quantum channels. Gaussian qua...
The classical capacity of quantum channels is the tight upper bound for the transmission rate of cla...
PACS 03.67.Hk, 89.70.Kn The classical capacity of quantum channels is the tight upper bound for the ...
We establish the classical capacity of optical quantum channels as a sharp transition between two re...
The long-standing conjectures of the optimality of Gaussian inputs and additivity are solved for a b...
As with classical information, error-correcting codes enable reliable transmission of quantum inform...
Entanglement is a valuable quantum resource in quantum information processing. In classical communic...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
We investigate the capacity of bosonic quantum channels for the transmission of quantum information....
Optical channels, such as fibers or free-space links, are ubiquitous in today's telecommunication n...
Optical channels, such as fibers or free-space links, are ubiquitous in today's telecommunication ne...
We prove that a strong converse theorem holds for the classical capacity of all phase-insensitive bo...
We prove that a strong converse theorem holds for the classical capacity of all phase-insensitive bo...
Thesis Supervisor: Jeffrey H. Shapiro Title: Julius A. Stratton Professor of Electrical Engineering...
Research in the past decade has established capacity theorems for point-to-point bosonic channels wi...
In this thesis we study the information transmission through Gaussian quantum channels. Gaussian qua...
The classical capacity of quantum channels is the tight upper bound for the transmission rate of cla...
PACS 03.67.Hk, 89.70.Kn The classical capacity of quantum channels is the tight upper bound for the ...
We establish the classical capacity of optical quantum channels as a sharp transition between two re...
The long-standing conjectures of the optimality of Gaussian inputs and additivity are solved for a b...
As with classical information, error-correcting codes enable reliable transmission of quantum inform...
Entanglement is a valuable quantum resource in quantum information processing. In classical communic...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
We investigate the capacity of bosonic quantum channels for the transmission of quantum information....