Claims
- 1. A method for controlling the state of a qubit, comprising: controlling a current in a loop of superconducting material, said loop having at least two Josephson junctions that isolate a mesoscopic island of the loop.
- 2. A method for initializing a two-junction superconducting loop qubit, comprising: providing a bias current in the loop I0=±Ii for a time duration t such that the qubit enters one of its basis states.
- 3. A method for reading out a state of a qubit having two Josephson junctions that connect a mesoscopic portion of the qubit to a bulk portion, and a control Josephson junction in said bulk portion, comprising:
providing a bias current in the loop I=IDC+IAC for some duration t; and measuring a potential drop VR across said control Josephson junction.
- 4. A method for reading a state of a qubit having two Josephson junctions that connect a mesoscopic portion of the qubit to a bulk portion of the qubit, comprising;
applying a bias field across said mesoscopic island portion; and measuring a resulting potential related to said bias field.
- 5. The method of claim 4, wherein the qubit is coupled to a dc-SQUID and said measuring a resulting potential includes measuring the potential across said dc-SQUID.
- 6. The method of claim 4, wherein the qubit is coupled to a tank circuit and said measuring a resulting potential includes measuring an impedance of said tank circuit.
- 7. A quantum register comprising;
a first qubit, wherein said first qubit includes a superconducting loop, said superconducting loop comprising a bulk loop portion and a mesoscopic island portion, said superconducting loop further comprising at least two Josephson junctions separating said bulk loop portion from said mesoscopic island portion, and an apparatus for coupling said first qubit to a second qubit.
- 8. The quantum register of claim 7, wherein said apparatus for coupling comprises a bus, wherein said bus is capacitively coupled to at least said first qubit and said second qubit.
- 9. The quantum register of claim 8, wherein said bus comprises a switch.
- 10. The quantum register of claim 9, wherein said switch comprises a single electron transistor.
- 11. The quantum register of claim 8, further comprising a capacitive connection between said bus and said first qubit.
- 12. The quantum register of claim 11, wherein said capacitive connection comprises a switch, wherein said switch has a first state and a second state, and wherein said first state capacitively connects said first qubit to said bus and said second state isolates said first qubit from said bus.
- 13. The quantum register of claim 12, wherein said switch comprises a single electron transistor.
- 14. The quantum register of claim 12, wherein said bus comprises a switch for connecting said bus to said first qubit.
- 15. A method for performing an entanglement operation between a first qubit and a second qubit comprising;
biasing a first qubit, wherein said first qubit comprises a first superconducting loop, said first superconducting loop comprising a first bulk loop portion and a first mesoscopic island portion, said first superconducting loop further comprising at least two Josephson junctions separating said first bulk loop portion from said first mesoscopic island portion; and biasing a second qubit, wherein said second qubit comprises a second superconducting loop, said second superconducting loop comprising a second bulk loop portion and a second mesoscopic island portion, said second superconducting loop further comprising at least two Josephson junctions separating said second bulk loop portion from said second mesoscopic island portion, wherein said first and second qubits share mutual inductance with each other and wherein said first and second qubits share flux when mutually biased.
- 16. The method of claim 15, wherein said shared flux between said first and second qubits does not disrupt the qubit states when said first and second qubits are not mutually biased.
REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims priority from U.S. Provisional Application No. 60/341,794, titled “Characterization and Measurement of Superconducting Structures” filed Dec. 18, 2001, the entire contents of which are hereby incorporated by reference. The present application also claims priority from U.S. Provisional Application No. 60/349,663, titled “Two-Junction D-Wave Qubit” filed Jan. 15, 2002, the entire contents of which are hereby incorporated by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60341974 |
Dec 2001 |
US |
|
60349663 |
Jan 2002 |
US |