All metal objects support fluctuating currents that are responsible for evanescent-wave Johnson noise in their vicinity due both to thermal and quantum effects. The noise fields can decohere qubits in their neighborhood. It is quantified by the average value of $B(x,t)B(x',t')$ and its time Fourier transform. We develop the formalism particularly for objects whose dimensions are small compared with the skin depth, which is the appropriate regime for nanoscale devices. This leads to a general and surprisingly simple formula for the noise correlation function of an object of arbitrary shape. This formula has a clear physical interpretation in terms of induced currents in the object. It can also be the basis for straightforward numeri...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We report a direct measurement of the low-frequency noise spectrum in a superconducting flux qubit. ...
This thesis presents a set of experiments that study the interplay between the wave-particle duality...
We have measured flux-noise correlations in a tunable superconducting flux qubit. The device consist...
We study spatial noise correlations in a Si/SiGe two-qubit device with integrated micromagnets. Our ...
doi:10.1088/1367-2630/11/2/025002 Abstract. The efficiency of the future devices for quantum informa...
9 pages, 6 figuresInternational audienceWe study Johnson-Nyquist noise in macroscopically inhomogene...
For over three decades, the presence of magnetic flux noise with a power spectral density scaling ro...
This thesis is about random fluctuations over time (or noise) of electric currents and voltages occu...
Solid state qubits promise the great advantage of being naturally scalable to large quantum computer...
The interaction between solid-state qubits and their environmental degrees of freedom produces non-u...
International audienceWe derive simple expressions that relate the noise and correlation properties ...
The origin of magnetic flux noise in Superconducting Quantum Interference Devices with a power spect...
Knowing a quantum system's environment is critical for its practical use as a quantum device. Qubit ...
The central topic of this thesis is the physics of noise: the Fourier transform of the current-curre...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We report a direct measurement of the low-frequency noise spectrum in a superconducting flux qubit. ...
This thesis presents a set of experiments that study the interplay between the wave-particle duality...
We have measured flux-noise correlations in a tunable superconducting flux qubit. The device consist...
We study spatial noise correlations in a Si/SiGe two-qubit device with integrated micromagnets. Our ...
doi:10.1088/1367-2630/11/2/025002 Abstract. The efficiency of the future devices for quantum informa...
9 pages, 6 figuresInternational audienceWe study Johnson-Nyquist noise in macroscopically inhomogene...
For over three decades, the presence of magnetic flux noise with a power spectral density scaling ro...
This thesis is about random fluctuations over time (or noise) of electric currents and voltages occu...
Solid state qubits promise the great advantage of being naturally scalable to large quantum computer...
The interaction between solid-state qubits and their environmental degrees of freedom produces non-u...
International audienceWe derive simple expressions that relate the noise and correlation properties ...
The origin of magnetic flux noise in Superconducting Quantum Interference Devices with a power spect...
Knowing a quantum system's environment is critical for its practical use as a quantum device. Qubit ...
The central topic of this thesis is the physics of noise: the Fourier transform of the current-curre...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We report a direct measurement of the low-frequency noise spectrum in a superconducting flux qubit. ...
This thesis presents a set of experiments that study the interplay between the wave-particle duality...