Solving Critical Section problem in Distributed system by Entangled Quantum bits
... exponentially faster than any current computer could ever do. The most famous algorithm, the integerfactoring algorithm of Peter Shor [17], would allow the most popular encryption methods in use today to be cracked easily, if large enough quantum computers can be constructed. Thus the race is on to ...
... exponentially faster than any current computer could ever do. The most famous algorithm, the integerfactoring algorithm of Peter Shor [17], would allow the most popular encryption methods in use today to be cracked easily, if large enough quantum computers can be constructed. Thus the race is on to ...
Complexity Limitations on Quantum Computation 1 Introduction
... For the rest of the paper, we will assume that the pairing function is implicitly used whenever we have a function of two or more arguments. We can also define many interesting counting classes using GapP functions. For this paper we consider the following classes. Definition 2.3 The class PP consis ...
... For the rest of the paper, we will assume that the pairing function is implicitly used whenever we have a function of two or more arguments. We can also define many interesting counting classes using GapP functions. For this paper we consider the following classes. Definition 2.3 The class PP consis ...
High-fidelity Z-measurement error encoding of optical qubits
... state—and then performing only single qubit measurements in a basis determined from the outcome of previous measurements 关22兴. Like the n-qubit Z-error QEC code, these cluster states are robust against accidental Z measurement. The encoding of Eq. 共1兲 also forms the basic element in a redundancy cod ...
... state—and then performing only single qubit measurements in a basis determined from the outcome of previous measurements 关22兴. Like the n-qubit Z-error QEC code, these cluster states are robust against accidental Z measurement. The encoding of Eq. 共1兲 also forms the basic element in a redundancy cod ...
Demonstration of a Stable Atom-Photon Entanglement Source for
... the further application. Another kind of atom-photon entanglement is realized using the orbital angular momentum (OAM) states [19], which could also extend to highdimensional entanglement. However, the divergence property of different OAM modes makes it impractical for longdistance quantum communica ...
... the further application. Another kind of atom-photon entanglement is realized using the orbital angular momentum (OAM) states [19], which could also extend to highdimensional entanglement. However, the divergence property of different OAM modes makes it impractical for longdistance quantum communica ...
Toposes and categories in quantum theory and gravity
... Unified description of classical gauge theories and general relativity and the corresponding space-time quantization leads to some generalization of physical ideas and corresponding mathematical structures. In physics, it is the sudden changes in viewpoint that go on to inspire progress shifting usu ...
... Unified description of classical gauge theories and general relativity and the corresponding space-time quantization leads to some generalization of physical ideas and corresponding mathematical structures. In physics, it is the sudden changes in viewpoint that go on to inspire progress shifting usu ...