IP Library Granted Patent US 10,380,495
Granted Patent B2
US 10,380,495 · App. 15/749,463 · Granted Aug 13, 2019

Quantum information processing system

Inventor: Peter Leek (Oxford, GB)
Assignee: OXFORD UNIVERSITY INNOVATION LIMITED
G06N10/00H01L39/223H03K19/1952
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Quick Facts
Patent No.
US 10,380,495
App. No.
15/749,463
Granted
Aug 13, 2019
Kind
B2
Abstract

A building block ( 1 ) for a quantum information processing system includes a superconducting qubit ( 2 ) having a Josephson junction ( 5 ) connected between two superconducting electrodes ( 3, 4 ). The two superconducting electrodes ( 3, 4 ) are coaxial and coplanar. The building block ( 1 ) also includes a control line ( 6 ) coupled to the superconducting qubit ( 2 ) and arranged to control the state of the superconducting qubit ( 2 ), and/or a readout element ( 8 ) coupled to the superconducting qubit ( 2 ) and arranged to measure the state of the superconducting qubit ( 2 ). The control line ( 6 ) and/or the readout element ( 8 ) are arranged out of plane with respect to the two superconducting electrodes ( 3, 4 ).

Claims (25)

1. A building block for a quantum information processing system comprising:

a superconducting qubit comprising a Josephson junction connected between two superconducting electrodes, wherein the two superconducting electrodes are coaxial and coplanar;

a control line coupled to the superconducting qubit and arranged to control the state of the superconducting qubit; and/or

a readout element coupled to the superconducting qubit and arranged to measure the state of the superconducting qubit;

wherein at least one of the control line and the readout element is arranged in a plane that is non-parallel to a plane of the two superconducting electrodes.

2. The building block as claimed in claim 1 , wherein an outer superconducting electrode of the two superconducting electrodes comprises a ground plane.

3. The building block as claimed in claim 1 , wherein the two superconducting electrodes of the superconducting qubit are radially symmetric.

4. The building block as claimed in claim 1 , wherein the superconducting qubit is arranged to be frequency tuneable.

5. The building block as claimed in claim 1 , comprising the control line, wherein the control line is arranged coaxially with the two superconducting electrodes of the superconducting qubit.

6. The building block as claimed in any claim 1 , comprising the control line, wherein the control line comprises a magnetic flux control line.

7. The building block as claimed in claim 1 , comprising the control line, wherein the control line is arranged to provide universal control of the quantum state of the superconducting qubit.

8. The building block as claimed in claim 1 , comprising the control line, wherein the control line is arranged to radiate the superconducting qubit with electromagnetic radiation.

9. The building block as claimed in claim 1 , comprising the control line, wherein the control line is arranged to apply a pulse of electromagnetic radiation to the superconducting qubit.

10. The building block as claimed in claim 1 , comprising the readout element, wherein the readout element is arranged coaxially with the two superconducting electrodes of the superconducting qubit.

11. The building block as claimed in claim 1 , wherein the two superconducting electrodes are arranged co-axially with the control line and/or the readout element.

12. The building block as claimed in claim 1 , comprising the readout element, wherein the readout element comprises a resonator coupled to the superconducting qubit.

13. The building block as claimed in claim 1 , comprising the control line and the readout element, wherein the control line and the readout element are formed as a single element.

14. A quantum information processing system comprising plurality of building blocks, wherein each building block of a plurality of building blocks comprises a building block as claimed in claim 1 ;

wherein at least some building blocks of the plurality of building blocks are coupled to one or more other building blocks of the plurality of building blocks.

15. The quantum information processing system as claimed in claim 14 , wherein each building block of the plurality of building blocks comprises a control line, and the control line of each building block is only coupled to a single superconducting qubit.

16. The quantum information processing system as claimed in claim 14 , wherein each building block of the plurality of building blocks comprises a control line, and the readout element of each building block is only coupled to a single superconducting qubit.

17. The quantum information processing system as claimed in claim 14 , wherein at least one building block of the plurality of building blocks is coupled to a building block nearest to the at least one building block.

18. The quantum information processing system as claimed in claim 14 , wherein the coupling between building blocks comprises a capacitor.

19. The quantum information processing system as claimed in claim 14 , further comprising processing circuitry arranged to operate on one or more building blocks of the plurality of building blocks.

20. The quantum information processing system as claimed in claim 19 , wherein the processing circuitry is arranged to implement one or more quantum logic gates.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2018
From: LEEK, PETER
To: OXFORD UNIVERSITY INNOVATION LIMITED
Reel/Frame 044794/0691 →
Priority Claims (1)
GB 1513774.8 · Aug 4, 2015 · national
Continuity (1)
Related Publication 20180240033A1 · Aug 23, 2018
Cited By (1)
US 12,718,975