We investigate flux qubits driven by a biharmonic magnetic signal, with a phase lag that acts as an effective time reversal broken parameter. The driving induced transition rate between the ground and the excited state of the flux qubit can be thought as an effective transmitance, profiting from a direct analogy between interference effects at avoided level crossings and scattering events in disordered electronic systems. For time scales prior to full relaxation but large compared to the decoherence time, this characteristic rate has been accessed experimentally and its sensitivity with both the phase lag and the dc flux detuning explored. In this way signatures of Universal Conductance Fluctuations-like effects have recently been analized ...
The transient dynamics and the relaxation of three quantum and mesoscopic systems are investigated. ...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
The fluxonium qubit has arisen as one of the most promising candidate devices for implementing quant...
We investigate the effect of broken time reversal symmetry in flux qubits driven by a biharmonic mag...
In the presence of time-reversal symmetry, quantum interference gives strong corrections to the elec...
We present experiments on the dynamics of a two-state parametric fluctuator in a superconducting flu...
We report detailed measurements of the relaxation and dephasing time in a flux-qubit measured by a s...
We study Landau-Zener-Stückelberg (LZS) interferometry in multilevel systems coupled to an Ohmic qua...
We study the exact solution of the Schrödinger equation for the dissipative dynamics of a qubit, ach...
We have investigated decoherence in Josephson-junction flux qubits. Based on the measurements of dec...
The interaction between solid-state qubits and their environmental degrees of freedom produces non-u...
AbstractA double SQUID qubit (Superconducting Quantum Interference Device) can be handled by applyin...
We investigate the role of vacuum (zero-point) fluctuations in generating decoherence in a number of...
The persistence of coherence of a system of superconducting flux-qubits, in the presence of an ensem...
We study the decoherence of a qubit weakly coupled to frustrated spin baths. We focus on spin baths ...
The transient dynamics and the relaxation of three quantum and mesoscopic systems are investigated. ...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
The fluxonium qubit has arisen as one of the most promising candidate devices for implementing quant...
We investigate the effect of broken time reversal symmetry in flux qubits driven by a biharmonic mag...
In the presence of time-reversal symmetry, quantum interference gives strong corrections to the elec...
We present experiments on the dynamics of a two-state parametric fluctuator in a superconducting flu...
We report detailed measurements of the relaxation and dephasing time in a flux-qubit measured by a s...
We study Landau-Zener-Stückelberg (LZS) interferometry in multilevel systems coupled to an Ohmic qua...
We study the exact solution of the Schrödinger equation for the dissipative dynamics of a qubit, ach...
We have investigated decoherence in Josephson-junction flux qubits. Based on the measurements of dec...
The interaction between solid-state qubits and their environmental degrees of freedom produces non-u...
AbstractA double SQUID qubit (Superconducting Quantum Interference Device) can be handled by applyin...
We investigate the role of vacuum (zero-point) fluctuations in generating decoherence in a number of...
The persistence of coherence of a system of superconducting flux-qubits, in the presence of an ensem...
We study the decoherence of a qubit weakly coupled to frustrated spin baths. We focus on spin baths ...
The transient dynamics and the relaxation of three quantum and mesoscopic systems are investigated. ...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
The fluxonium qubit has arisen as one of the most promising candidate devices for implementing quant...