We describe entangling quantum gates for trapped ions mediated by a dissipative bus mode and show that suitably designed, polychromatic control pulses decrease ion-phonon entanglement substantially while maintaining the mediated interaction. In particular for multi-qubit gates this yields a signi cant improvement in gate performance
Ultra-cold Rydberg ions confined in a linear trap are presented as a possible solution to some of th...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Generating quantum entang...
Entanglement is a fundamental physical resource at the heart of quantum information theory. This The...
In this thesis, we develop a perturbative approximation for the solution of Lindblad master equation...
We introduce a scheme that combines phonon-mediated quantum logic gates in trapped ions with the ben...
The scaling of controlled quantum systems to large numbers of degrees of freedom is one of the long ...
Entangled states are a key resource in fundamental quantum physics, quantum cryptography, and quantu...
We propose and study ways speeding up of the entangling operations in the trapped ions system with h...
There are several known schemes for entangling trapped ion quantum bits for large-scale quantum comp...
We propose a scheme to implement arbitrary-speed quantum entangling gates on two trapped ions immer...
Entangling gates are an essential component of quantum computers. However, generating high-fidelity ...
It is commonly believed that decoherence is the main obstacle to quantum information processing. In ...
Two-qubit gates are a fundamental constituent of a quantum computer and typically its most challengi...
We propose a simple scheme for implementing quantum logic gates with a string of two-level trapped c...
We present a novel method of performing quantum logic gates in trapped ion quantum computers which d...
Ultra-cold Rydberg ions confined in a linear trap are presented as a possible solution to some of th...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Generating quantum entang...
Entanglement is a fundamental physical resource at the heart of quantum information theory. This The...
In this thesis, we develop a perturbative approximation for the solution of Lindblad master equation...
We introduce a scheme that combines phonon-mediated quantum logic gates in trapped ions with the ben...
The scaling of controlled quantum systems to large numbers of degrees of freedom is one of the long ...
Entangled states are a key resource in fundamental quantum physics, quantum cryptography, and quantu...
We propose and study ways speeding up of the entangling operations in the trapped ions system with h...
There are several known schemes for entangling trapped ion quantum bits for large-scale quantum comp...
We propose a scheme to implement arbitrary-speed quantum entangling gates on two trapped ions immer...
Entangling gates are an essential component of quantum computers. However, generating high-fidelity ...
It is commonly believed that decoherence is the main obstacle to quantum information processing. In ...
Two-qubit gates are a fundamental constituent of a quantum computer and typically its most challengi...
We propose a simple scheme for implementing quantum logic gates with a string of two-level trapped c...
We present a novel method of performing quantum logic gates in trapped ion quantum computers which d...
Ultra-cold Rydberg ions confined in a linear trap are presented as a possible solution to some of th...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Generating quantum entang...
Entanglement is a fundamental physical resource at the heart of quantum information theory. This The...