IP Library › Granted Patent US 11,423,322
Granted Patent B2
US 11,423,322 · App. 16/734,346 · Granted Aug 23, 2022

Integrated quantum computer incorporating quantum core and associated classical control circuitry

Inventors: Dirk Robert Walter Leipold (Fremont, CA); George Adrian Maxim (Saratoga, CA); Michael Albert Asker (San Jose, CA)
Assignee: Equal1.Labs Inc.
G06N10/00G06F1/20G06F15/16G06F15/7807
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Quick Facts
Patent No.
US 11,423,322
App. No.
16/734,346
Granted
Aug 23, 2022
Kind
B2
Abstract

A novel and useful fully integrated quantum computer containing both quantum core circuitry and associated classical electronic control circuits on the same monolithic die. The integrated quantum computer avoids ESD loading on the quantum structures and minimizes the need for long interconnects with resultant large parasitic inductances and capacitances. Such parasitics reduce the maximum operating frequency of the realized quantum core structures. A cryostat unit functions to provide several temperatures to the quantum computer including a temperature to cool the quantum core to approximately 4° K and the interface SoC to 77° K. Alternatively, the interface circuitry is also integrated with the main QPU on the same die. A programmable pattern generator executes sequences of instructions that control the quantum core. In accordance with the sequences, a pulse generator functions to generate the control signals that are input to the quantum core to perform quantum operations.

Claims (56)

1. A quantum computer, comprising:

a quantum processing unit, said quantum processing unit including:

one or more quantum cores, each quantum core having a plurality of qubits;

a plurality of classic support circuits electrically coupled to said one or more quantum cores, said plurality of classic support circuits including at least an injector circuit operative to inject a single particle and a detector circuit operative to detect the presence or absence of a single particle; and

wherein said one or more quantum cores and said plurality of classic support circuits are fabricated on a monolithic integrated circuit.

2. The quantum computer according to claim 1 , wherein said plurality of classic support circuits is selected from a group comprising a reset circuit, an injector circuit, an imposer circuit, a detector circuit, a detector amplifier circuit, and interface circuitry.

3. The quantum computer according to claim 1 , wherein said detector circuit is operative to generate a feedback signal that is multiplexed to at least one of a pattern generator, a high speed data bus, and an external support unit.

4. The quantum computer according to claim 1 , wherein said qubits comprise at least one of position based qubits, electrostatic based qubits, and charge based qubits.

5. The quantum computer according to claim 1 , further comprising a cryogenic cooling unit operative to maintain said quantum processor unit integrated circuit at or below 4K.

6. The quantum computer according to claim 1 , further comprising:

an external interface system on chip (SoC) electrically coupled to said quantum processor unit integrated circuit; and

an external support unit chip electrically coupled to said external interface SoC.

7. The quantum computer according to claim 1 , further comprising:

an internal interface circuit electrically coupled to and integrated with said plurality of classic support circuits, said internal interface circuit fabricated on said monolithic quantum processor unit integrated circuit; and

an external support unit chip electrically coupled to said quantum processing unit integrated circuit.

8. A quantum computer, comprising:

one or more quantum processing units, each quantum processing unit including:

one or more quantum cores, each quantum core having a plurality of qubits;

a plurality of classic support circuits electrically coupled to said one or more quantum cores;

wherein said one or more quantum cores and said plurality of classic support circuits are fabricated on a separate monolithic quantum processor system on chip (SoC); and

an external interface SoC electrically coupled to each quantum processing unit.

9. The quantum computer according to claim 8 , wherein said plurality of classic support circuits is selected from a group comprising a reset circuit, an injector circuit, an imposer circuit, a detector circuit, a detector amplifier circuit, and interface circuitry.

10. The quantum computer according to claim 9 , wherein said injector circuit and said detector circuit are operative to inject and detect the presence or absence of, respectively, a single particle.

11. The quantum computer according to claim 8 , wherein said qubits comprise at least one of position based qubits, electrostatic based qubits, and charge based qubits.

12. The quantum computer according to claim 8 , further comprising a cryogenic cooling unit operative to maintain said plurality of quantum processor unit SoC.s at or below 4K.

13. The quantum computer according to claim 8 , further comprising a cryogenic cooling unit operative to maintain said interface SoC. at or below 77K.

14. The quantum computer according to claim 8 , further comprising an external support unit electrically coupled to said interface SoC.

15. A quantum computer, comprising:

a quantum processing unit, said quantum processing unit including:

one or more quantum cores, each quantum core having a plurality of qubits;

a plurality of classic support circuits electrically coupled to said one or more quantum cores;

wherein said one or more quantum cores and said plurality of classic support circuits are fabricated on a first monolithic system on chip (SoC);

an interface circuit electrically coupled to said quantum processing unit, said interface circuit including:

one or more classic computing cores;

one or more clock generation circuits;

one or more interface circuits; and

wherein said one or more classic computing cores, said one or more clock generation circuits, and said one or more interface circuits are fabricated on a second monolithic SoC.

16. The quantum computer according to claim 15 , wherein said plurality of classic support circuits is selected from a group comprising a reset circuit, an injector circuit, an imposer circuit, a detector circuit, a detector amplifier circuit, and interface circuitry.

17. The quantum computer according to claim 16 , wherein said injector circuit and said detector circuit are operative to inject and detect the presence or absence of, respectively, a single particle.

18. The quantum computer according to claim 15 , wherein said qubits comprise at least one of position based qubits, electrostatic based qubits, and charge based qubits.

19. The quantum computer according to claim 15 , further comprising a cryogenic cooling unit operative to maintain said quantum processing unit SoC. at or below 4K.

20. The quantum computer according to claim 15 , further comprising a cryogenic cooling unit operative to maintain said interface SoC. at or below 77K.

21. The quantum computer according to claim 15 , further comprising an external support unit electrically coupled to said interface SoC.

22. A quantum computer, comprising:

a quantum processing unit, said quantum processing unit including:

one or more quantum cores, each quantum core having a plurality of qubits that include quantum dots located between control gates;

a plurality of classic support circuits electrically coupled to said one or more quantum cores;

one or more classic computing cores;

one or more clock generation circuits;

one or more interface circuits; and

wherein said one or more quantum cores, said plurality of classic support circuits, said one or more classic computing cores, said one or more clock generation circuits, and said one or more interface circuits are fabricated on a monolithic system on chip (SoC).

23. The quantum computer according to claim 22 , wherein said plurality of classic support circuits is selected from a group comprising a reset circuit, an injector circuit, an imposer circuit, a detector circuit, a detector amplifier circuit, and interface circuitry.

24. The quantum computer according to claim 23 , wherein said injector circuit and said detector circuit are operative to inject and detect the presence or absence of, respectively, a single particle.

25. The quantum computer according to claim 22 , wherein said qubits comprise at least one of position based qubits, electrostatic based qubits, and charge based qubits.

26. The quantum computer according to claim 22 , further comprising a cryogenic cooling unit operative to maintain said quantum processing unit SoC. at or below 4K.

27. The quantum computer according to claim 22 , further comprising an external support unit electrically coupled to said quantum processing unit SoC.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2020
From: LEIPOLD, DIRK ROBERT WALTER; MAXIM, GEORGE ADRIAN; ASKER, MICHAEL ALBERT
To: EQUAL1.LABS INC.
Reel/Frame 051712/0374 →
Continuity (26)
Continuation In Part 16446235 · Jun 19, 2019
Provisional Application 62794655 · Jan 20, 2019
Provisional Application 62794591 · Jan 19, 2019
Provisional Application 62791818 · Jan 13, 2019
Provisional Application 62788865 · Jan 6, 2019
Provisional Application 62731810 · Sep 14, 2018
Provisional Application 62726397 · Sep 3, 2018
Provisional Application 62726290 · Sep 2, 2018
Provisional Application 62726271 · Sep 2, 2018
Provisional Application 62703888 · Jul 27, 2018
Provisional Application 62698278 · Jul 15, 2018
Provisional Application 62695842 · Jul 10, 2018
Provisional Application 62694022 · Jul 5, 2018
Provisional Application 62692804 · Jul 1, 2018
Provisional Application 62692844 · Jul 1, 2018
Provisional Application 62692745 · Jun 30, 2018
Provisional Application 62689291 · Jun 25, 2018
Provisional Application 62689166 · Jun 24, 2018
Provisional Application 62689100 · Jun 23, 2018
Provisional Application 62689035 · Jun 22, 2018
Provisional Application 62687803 · Jun 21, 2018
Provisional Application 62688341 · Jun 21, 2018
Provisional Application 62687779 · Jun 20, 2018
Provisional Application 62687800 · Jun 20, 2018
Provisional Application 62687793 · Jun 20, 2018
Related Publication 20200160205A1 · May 21, 2020
Cited By (1)
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