We propose a single shot quantum measurement to determine the state of a Josephson charge quantum bit (qubit). The qubit is a Cooper pair box and the measuring device is a two junction superconducting quantum interference device (dc SQUID). This coupled system exhibits a close analogy with a Rydberg atom in a high Q cavity, except that in the present device we benefit from the additional feature of escape from the supercurrent state by macroscopic quantum tunneling, which provides the final readout. We test the feasibility of our idea against realistic experimental circuit parameters and by analyzing the phase fluctuations of the qubit.Peer reviewe
We present a measurement protocol for a flux qubit coupled to a dc-Superconducting QUantum Interfere...
The SQUID used to measure the flux state of a superconducting flux-based qubit interacts with the qu...
A dc SQUID phase qubit consists of two Josephson junctions in a loop. One junction acts as a qubit w...
We propose a single shot quantum measurement to determine the state of a Josephson charge quantum bi...
A two junction superconducting quantum interference device (SQUID) which can perform a single shot q...
A two junction superconducting quantum interference device (SQUID) which can perform a single shot q...
We have experimentally studied the energy levels of a mesoscopic superconducting quantum interferenc...
In this work we consider measurements on quantum systems emphasizing on read-out of superconducting ...
The observation and study of macroscopic quantum coherence (MQC), i.e. the coherent superposition an...
In this work we consider measurements on quantum systems emphasizingon read-out of superconducting q...
The flux states of a rf superconducting quantum interference device (SQUID) can be used to investiga...
The escape probability out of the superconducting state of a hysteretic dc SQUID has been measured a...
Single-electron transistors have been proposed to be used as a read-out device for Cooper pair charg...
Superconducting qubits have in recent years become a promising candidate for the implementation of a...
The escape probability out of the superconducting state of a hysteretic dc SQUID has been measured a...
We present a measurement protocol for a flux qubit coupled to a dc-Superconducting QUantum Interfere...
The SQUID used to measure the flux state of a superconducting flux-based qubit interacts with the qu...
A dc SQUID phase qubit consists of two Josephson junctions in a loop. One junction acts as a qubit w...
We propose a single shot quantum measurement to determine the state of a Josephson charge quantum bi...
A two junction superconducting quantum interference device (SQUID) which can perform a single shot q...
A two junction superconducting quantum interference device (SQUID) which can perform a single shot q...
We have experimentally studied the energy levels of a mesoscopic superconducting quantum interferenc...
In this work we consider measurements on quantum systems emphasizing on read-out of superconducting ...
The observation and study of macroscopic quantum coherence (MQC), i.e. the coherent superposition an...
In this work we consider measurements on quantum systems emphasizingon read-out of superconducting q...
The flux states of a rf superconducting quantum interference device (SQUID) can be used to investiga...
The escape probability out of the superconducting state of a hysteretic dc SQUID has been measured a...
Single-electron transistors have been proposed to be used as a read-out device for Cooper pair charg...
Superconducting qubits have in recent years become a promising candidate for the implementation of a...
The escape probability out of the superconducting state of a hysteretic dc SQUID has been measured a...
We present a measurement protocol for a flux qubit coupled to a dc-Superconducting QUantum Interfere...
The SQUID used to measure the flux state of a superconducting flux-based qubit interacts with the qu...
A dc SQUID phase qubit consists of two Josephson junctions in a loop. One junction acts as a qubit w...