The Zeno effect, in which repeated observation freezes the dynamics of a quantum system, stands as an iconic oddity of quantum mechanics. When a measurement is unable to distinguish between states in a subspace, the dynamics within that subspace can be profoundly altered, leading to non-trivial behavior. Here we show that such a measurement can turn a non-interacting system with only single-qubit control into a two- or multi-qubit entangling gate, which we call a Zeno gate. The gate works by imparting a geometric phase on the system, conditioned on it lying within a particular nonlocal subspace. We derive simple closed-form expressions for the gate fidelity under a number of non-idealities and show that the gate is viable for implementation...
We study the Quantum Zeno Effect (QZE) on a single qubit on IBM Quantum Experience devices under the...
We show that quantum Zeno dynamics can be mimicked by the isolated evolution of an unobserved system...
We propose a method to generate large cluster states without using conditional (e.g., CNOT, C-phase)...
The Zeno effect, in which repeated observation freezes the dynamics of a quantum system, stands as a...
The Zeno effect occurs in quantum systems when a very strong measurement is applied, which can alter...
The concept of using an environmentally-induced quantum Zeno effect to generate entanglement in the ...
The linear optics approach to quantum computing has several potential advantages but the logic opera...
Adiabatic quantum computing has demonstrated how quantum Zeno can be used to construct quantum optim...
We propose a new approach to the implementation of quantum gates in which decoherence during the gat...
Measurements performed on a system will alter the dynamics of that system, and in the strong-measure...
Quantum repeaters pave the way for long-distance quantum communications and quantum Internet, and th...
We suggest a quantum simulator that allows to study the role of memory effects in the dynamics of op...
Bound entanglement was shown to be activated [P. Horodecki et al., Phys. Rev. Lett. 82, 1056 (1999)]...
We analyze the quantum Zeno dynamics that takes place when a field stored in a cavity undergoes freq...
This research was funded by Personal Research Fund of Tokyo International University.An arbitrary am...
We study the Quantum Zeno Effect (QZE) on a single qubit on IBM Quantum Experience devices under the...
We show that quantum Zeno dynamics can be mimicked by the isolated evolution of an unobserved system...
We propose a method to generate large cluster states without using conditional (e.g., CNOT, C-phase)...
The Zeno effect, in which repeated observation freezes the dynamics of a quantum system, stands as a...
The Zeno effect occurs in quantum systems when a very strong measurement is applied, which can alter...
The concept of using an environmentally-induced quantum Zeno effect to generate entanglement in the ...
The linear optics approach to quantum computing has several potential advantages but the logic opera...
Adiabatic quantum computing has demonstrated how quantum Zeno can be used to construct quantum optim...
We propose a new approach to the implementation of quantum gates in which decoherence during the gat...
Measurements performed on a system will alter the dynamics of that system, and in the strong-measure...
Quantum repeaters pave the way for long-distance quantum communications and quantum Internet, and th...
We suggest a quantum simulator that allows to study the role of memory effects in the dynamics of op...
Bound entanglement was shown to be activated [P. Horodecki et al., Phys. Rev. Lett. 82, 1056 (1999)]...
We analyze the quantum Zeno dynamics that takes place when a field stored in a cavity undergoes freq...
This research was funded by Personal Research Fund of Tokyo International University.An arbitrary am...
We study the Quantum Zeno Effect (QZE) on a single qubit on IBM Quantum Experience devices under the...
We show that quantum Zeno dynamics can be mimicked by the isolated evolution of an unobserved system...
We propose a method to generate large cluster states without using conditional (e.g., CNOT, C-phase)...