We present the experimental observation of the effects of macroscopic quantum tunnelling in a SQUID device, consisting of a rf SQUID coupled to a readout system based on a dc SQUID sensor. Data on the decay rate from the metastable flux states of a if SQUID are reported, both in the classical and quantum regimes. The low dissipation level and the good insulation of the probe from external noise are encouraging in view of building a macroscopic quantum coherent system
We present a theoretical study of the resonant quantum behavior for a macroscopic superconducting sy...
We present a theoretical study of the resonant quantum behavior for a macroscopic superconducting sy...
Superconducting circuits with Josephson tunnel junctions are interesting systems for research on qua...
The growing amount of theoretical interest in the area of quantum computing have stimulated in recen...
At low temperature and low damping, the magnetic flux of a rf Superconducting QUantum Interference D...
Usually quantum mechanical behavior is associated with single elementary particles or a moderate siz...
We present different types of integrated planar SQUID devices in view of Macroscopic Quantum Coheren...
The observation and study of macroscopic quantum coherence (MQC), i.e. the coherent superposition an...
We report on the first measurements of the intrinsic dissipation in a macroscopic system cooled at v...
The flux states of a rf superconducting quantum interference device (SQUID) can be used to investiga...
A current-biased dc SQUID behaves as a quantum particle trapped in a cubic-quadratic potential well ...
The measurement process is introduced in the dynamics of Josephson devices exhibiting quantum behavi...
The measurement process is introduced in the dynamics of Josephson devices exhibiting quantum behavi...
In this paper we present a theoretical approach to describe the quantum behaviour of a macroscopic s...
To test whether the theory of macroscopic quantum tunneling (MQT) is applicable to systems with 2 de...
We present a theoretical study of the resonant quantum behavior for a macroscopic superconducting sy...
We present a theoretical study of the resonant quantum behavior for a macroscopic superconducting sy...
Superconducting circuits with Josephson tunnel junctions are interesting systems for research on qua...
The growing amount of theoretical interest in the area of quantum computing have stimulated in recen...
At low temperature and low damping, the magnetic flux of a rf Superconducting QUantum Interference D...
Usually quantum mechanical behavior is associated with single elementary particles or a moderate siz...
We present different types of integrated planar SQUID devices in view of Macroscopic Quantum Coheren...
The observation and study of macroscopic quantum coherence (MQC), i.e. the coherent superposition an...
We report on the first measurements of the intrinsic dissipation in a macroscopic system cooled at v...
The flux states of a rf superconducting quantum interference device (SQUID) can be used to investiga...
A current-biased dc SQUID behaves as a quantum particle trapped in a cubic-quadratic potential well ...
The measurement process is introduced in the dynamics of Josephson devices exhibiting quantum behavi...
The measurement process is introduced in the dynamics of Josephson devices exhibiting quantum behavi...
In this paper we present a theoretical approach to describe the quantum behaviour of a macroscopic s...
To test whether the theory of macroscopic quantum tunneling (MQT) is applicable to systems with 2 de...
We present a theoretical study of the resonant quantum behavior for a macroscopic superconducting sy...
We present a theoretical study of the resonant quantum behavior for a macroscopic superconducting sy...
Superconducting circuits with Josephson tunnel junctions are interesting systems for research on qua...