Abstract: Quantum computation is a novel way of information processing which allows, for certain classes of problems, exponential speedups over classical computation. Various models of quantum computation exist, such as the adiabatic, circuit and measurement-based models. They have been proven equivalent in their computational power, but operate very differently. As such, they may be suitable for realization in different phys-ical systems, and also offer different perspectives on open questions such as the precise origin of the quantum speedup. Here, we give an introduction to the one-way quantum computer, a scheme of measurement-based quantum computation. In this model, the computation is driven by local measurements on a carefully chosen,...
In this paper, we draw attention to consider that the quantum entanglement measurement should be imp...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
In this thesis, I investigate aspects of local Hamiltonians in quantum computing. First, I focus on ...
In the formalism of measurement based quantum computation we start with a given fixed entangled stat...
Quantum computation offers a promising new kind of information processing, where the non-classical f...
We give a detailed account of the one-way quantum computer, a scheme of quantum computation that con...
This thesis consists of two parts. The main part is concerned with new schemes for measurement-based...
Measurement-based quantum computation is different from other approaches for quantum computation, in...
The ability to perform a universal set of quantum operations based solely on static resources and me...
In the study of quantum computation, data is represented in terms of linear operators which form a g...
Standard quantum computation is based on sequences of unitary quantum logic gates that process qubit...
AbstractWe develop a formal model for distributed measurement-based quantum computations, adopting a...
Standard quantum computation is based on sequences of unitary quantum logic gates which process qubi...
Quantum measurement is universal for quantum computation. Two models for performing measurement-base...
The ability to perform a universal set of quantum operations based solely on static resources and me...
In this paper, we draw attention to consider that the quantum entanglement measurement should be imp...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
In this thesis, I investigate aspects of local Hamiltonians in quantum computing. First, I focus on ...
In the formalism of measurement based quantum computation we start with a given fixed entangled stat...
Quantum computation offers a promising new kind of information processing, where the non-classical f...
We give a detailed account of the one-way quantum computer, a scheme of quantum computation that con...
This thesis consists of two parts. The main part is concerned with new schemes for measurement-based...
Measurement-based quantum computation is different from other approaches for quantum computation, in...
The ability to perform a universal set of quantum operations based solely on static resources and me...
In the study of quantum computation, data is represented in terms of linear operators which form a g...
Standard quantum computation is based on sequences of unitary quantum logic gates that process qubit...
AbstractWe develop a formal model for distributed measurement-based quantum computations, adopting a...
Standard quantum computation is based on sequences of unitary quantum logic gates which process qubi...
Quantum measurement is universal for quantum computation. Two models for performing measurement-base...
The ability to perform a universal set of quantum operations based solely on static resources and me...
In this paper, we draw attention to consider that the quantum entanglement measurement should be imp...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
In this thesis, I investigate aspects of local Hamiltonians in quantum computing. First, I focus on ...