We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequency noise by random telegraph processes. Our approach is based on a so-called spin-fluctuator model in which a noisy environment is modeled by a large number of fluctuators. In the continuous limit we obtain an effective random process (ERP) that is described by a distribution function of the fluctuators. In a simplified model, we reduce the ERP to the two (slow and fast) ensembles of fluctuators. Using this model, we study decoherence in a superconducting flux qubit and we compare our theoretical results with the available experimental data. We demonstrate good agreement of our theoretical predictions with the experiments. Our approach can ...
A particular superconducting quantum interference device (SQUID) qubit, namely the double SQUID qubi...
We develop a technique to compute the high-frequency asymptotics of spin correlators in weakly inter...
Reliable processing of quantum information is a milestone to achieve for the deployment of quantum t...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We study the effects of noise and decoherence for a double-potential well system, suitable for the f...
We study the effects of noise and decoherence for a double-potential well system, suitable for the f...
doi:10.1088/1367-2630/11/2/025002 Abstract. The efficiency of the future devices for quantum informa...
A simulation of decoherence as random noise in the Hamiltonian is studied. The full Hamiltonian for ...
Solid state qubits promise the great advantage of being naturally scalable to large quantum computer...
We review our recent contributions to two topics that have become of interest in the field of open, ...
Quantum computing provides significantly more efficient methods than classical computers for doing r...
We analyze local spin-echo procedures to protect entanglement between two non-interacting qubits, e...
Quantum coherence in natural and artificial spin systems is fundamental to applications ranging from...
Advancements in the technology of quantum bits invoke more precise calculations for decoherence and ...
We investigate the influence of nonstationary 1/f^mu noise, produced by interacting defects, on a qu...
A particular superconducting quantum interference device (SQUID) qubit, namely the double SQUID qubi...
We develop a technique to compute the high-frequency asymptotics of spin correlators in weakly inter...
Reliable processing of quantum information is a milestone to achieve for the deployment of quantum t...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We study the effects of noise and decoherence for a double-potential well system, suitable for the f...
We study the effects of noise and decoherence for a double-potential well system, suitable for the f...
doi:10.1088/1367-2630/11/2/025002 Abstract. The efficiency of the future devices for quantum informa...
A simulation of decoherence as random noise in the Hamiltonian is studied. The full Hamiltonian for ...
Solid state qubits promise the great advantage of being naturally scalable to large quantum computer...
We review our recent contributions to two topics that have become of interest in the field of open, ...
Quantum computing provides significantly more efficient methods than classical computers for doing r...
We analyze local spin-echo procedures to protect entanglement between two non-interacting qubits, e...
Quantum coherence in natural and artificial spin systems is fundamental to applications ranging from...
Advancements in the technology of quantum bits invoke more precise calculations for decoherence and ...
We investigate the influence of nonstationary 1/f^mu noise, produced by interacting defects, on a qu...
A particular superconducting quantum interference device (SQUID) qubit, namely the double SQUID qubi...
We develop a technique to compute the high-frequency asymptotics of spin correlators in weakly inter...
Reliable processing of quantum information is a milestone to achieve for the deployment of quantum t...