We present the design of a superconducting qubit that has circulating currents of opposite sign as its two states. The circuit consists of three nanoscale aluminum Josephson junctions connected in a superconducting loop and controlled by magnetic fields. The advantages of this qubit are that it can be made insensitive to background charges in the substrate, the flux in the two states can be detected with a superconducting quantum interference device, and the states can be manipulated with magnetic fields. Coupled systems of qubits are also discussed as well as sources of decoherence
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
The SQUID used to measure the flux state of a superconducting flux-based qubit interacts with the qu...
We present the design of a superconducting qubit that has circulating currents of opposite sign as i...
We present the design of a superconducting qubit that has circulating currents of opposite sign as i...
We present the design of a superconducting qubit that has circulating currents of opposite sign as i...
We present the design of a superconducting qubit that has circulating currents of opposite sign as i...
Decoherence of a solid state based qubit can be caused by coupling to microscopic degrees of freedom...
Decoherence of a solid state based qubit can be caused by coupling to microscopic degrees of freedom...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
We consider a superconducting persistent-current qubit consisting of a three-junction superconductin...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
The SQUID used to measure the flux state of a superconducting flux-based qubit interacts with the qu...
We present the design of a superconducting qubit that has circulating currents of opposite sign as i...
We present the design of a superconducting qubit that has circulating currents of opposite sign as i...
We present the design of a superconducting qubit that has circulating currents of opposite sign as i...
We present the design of a superconducting qubit that has circulating currents of opposite sign as i...
Decoherence of a solid state based qubit can be caused by coupling to microscopic degrees of freedom...
Decoherence of a solid state based qubit can be caused by coupling to microscopic degrees of freedom...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
We consider a superconducting persistent-current qubit consisting of a three-junction superconductin...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
The SQUID used to measure the flux state of a superconducting flux-based qubit interacts with the qu...