Claims
- 1. A quantum computing apparatus comprising:
a first substrate, attached to which is a layer of superconducting material; a second substrate, deposited on which is a flux shield and on the flux shield is at least one element of circuitry; wherein the superconducting material and the second substrate are separated by a mean distance that is small enough to permit coupling between the element of circuitry and the superconducting material.
- 2. An extra-substrate control system comprising:
a first substrate, attached to which is at least one superconducting structure; and a second substrate, connected to which is at least one element of circuitry; wherein the superconducting structure and the circuitry are configured to interact by inductive or capacitive coupling, so that a change in a state of the superconducting structure can be detected by the circuitry.
- 3. The extra-substrate control system of claim 2 further comprising a mechanism for controlling the interaction of the element of circuitry with other devices.
- 4. The extra-substrate control system of claim 2, additionally comprising, attached to the second substrate, a plurality of elements of integrated circuitry.
- 5. The extra-substrate control system of claim 2, wherein the element of circuitry is patterned on to the second substrate.
- 6. The extra-substrate control system of claim 2 wherein the coupling is capacitive.
- 7. The extra-substrate control system of claim 2 wherein the coupling is inductive.
- 8. The extra-substrate control system of claim 2 further comprising a flux shield between the second substrate, and the element of circuitry.
- 9. The extra-substrate control system of claim 8 wherein the flux shield is made from a superconducting material.
- 10. The extra-substrate control system of claim 8 wherein the flux shield is made from a composite of non-superconducting materials.
- 11. The extra-substrate control system of claim 9 wherein the superconducting material comprises a Type I superconducting material.
- 12. The extra-substrate control system of claim 9 wherein the superconducting material comprises niobium.
- 13. The extra-substrate control system of claim 8 wherein the flux shield contains an aperture.
- 14. The extra-substrate control system of claim 13 wherein the flux shield additionally comprises a weak link that connects the aperture with the edge of the shield.
- 15. The extra-substrate control system of claim 13 wherein the flux shield additionally comprises a slit that connects the aperture with the edge of the shield.
- 16. The extra-substrate control system of claim 2 wherein the superconducting structure comprises a qubit.
- 17. The extra-substrate control system of claim 16 wherein the qubit is a phase qubit.
- 18. The extra-substrate control system of claim 16 wherein the qubit is a charge qubit.
- 19. The extra-substrate control system of claim 16 wherein the qubit comprises a Josephson junction.
- 20. The extra-substrate control system of claim 13 wherein the aperture is aligned with a qubit.
- 21. The extra-substrate control system of claim 8 wherein the flux shield comprises a plurality of apertures.
- 22. The extra-substrate control system of claim 2 wherein the first substrate and the second substrate are together a single substrate.
- 23. A quantum computing apparatus comprising:
a first substrate, deposited on which is a superconducting structure, additionally deposited on which is a flux shield and on the flux shield is at least one element of circuitry; wherein the superconducting structure and the element of circuitry are coupled by the flux shield.
- 24. The quantum computing apparatus of claim 23 wherein the flux shield contains an aperture.
- 25. The quantum computing apparatus of claim 24 wherein the flux shield additionally comprises a weak link that connects the aperture with the edge of the shield.
- 26. The quantum computing apparatus of claim 24 wherein the flux shield additionally comprises a slit that connects the aperture with the edge of the shield.
- 27. The quantum computing apparatus of claim 23 wherein the superconducting structure includes a qubit.
- 28. The quantum computing apparatus of claim 23 wherein the element of circuitry includes a resonance circuit.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to provisional U.S. application serial No. ______, filed on Apr. 15th 2002, entitled “Extra-Substrate Control System” and identified by attorney docket number 11090-008-888, incorporated herein by reference.
[0002] This application is also related to the following applications: application Ser. No. 09/452,749 entitled “Permanent Readout Superconducting Qubit” filed Dec. 1st, 1999; application Ser. No. 09/872,495 entitled “Quantum Processing System And Method For A Superconducting Phase Qubit” filed Jun. 1st, 2001; application Ser. No. 10/025,848 entitled “Finger Squid Qubit Device” filed Dec. 17th, 2001; and application Ser. No. 60/341,794, entitled “Characterization And Measurement of Superconducting Structures” filed Dec. 18th, 2001; and application Ser. No. 60/349,663, entitled “Two Junction Phase Qubit” filed Jan. 15th, 2002, each of which is incorporated herein by reference in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60372958 |
Apr 2002 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
10134665 |
Apr 2002 |
US |
Child |
10746992 |
Dec 2003 |
US |