Nova Patents
EP3284115B1

Wireless josephson parametric converter

Abstract

This record has no abstract on file.

EP3284115B1, drawing sheet 1
Sheet 1 of 11

Term

9.6 yearsleft in the term

Expires 15 April 2036.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

13 claims: 7 independent, 6 dependent

  1. 1
    A wireless converter for microwave signals comprising:a substrate (402);a plurality of first Josephson junctions (515) formed on the substrate and connected in a ring;an annular ground plane (404) formed on the substrate and being patterned in an annular shape to have a central open area (407) in which the plurality of first Josephson junctions is located;a first antenna (371) formed on the substrate and connected to the plurality of first Josephson junctions;and a second antenna (372) formed on the substrate, oriented perpendicular to the first antenna, and connected to the plurality of first Josephson junctions, wherein the annular ground plane (404) forms reference potential for an active circuit of the wireless converter, characterized in that the annular ground plane (404) comprises a conductive film patterned in an annular shape having at least one cut (403) across the film, wherein the cut prevents circular current flow around the annularly shaped film, wherein: - the at least one cut divides the ground plane symmetrically and is oriented along an axis of symmetry of the first antenna (371) and second antenna (372), or - the at least one cut is a single cut extending from the central open area (407) to an edge or corner of the conductive film.
  2. 4
    The wireless converter of any of claims 1 to 3, wherein the plurality of first Josephson junctions (515) is arranged to form a Josephson parametric converter.
  3. 5
    The wireless converter of any of claims 1 to 4, wherein the at least one capacitor comprises:a first capacitor (444 ;445) connected to a first node between a first half (371a) of the first antenna (371) and the ring;a second capacitor (442 ;441) connected to a second node between a second half (371b) of the first antenna (371) and the ring;a third capacitor (432 ;431) connected to a third node between a first half (372a) of the second antenna (372) and the ring;and a fourth capacitor (434 ;435) connected to a fourth node between a second half (372b) of the second antenna (372) and the ring, wherein: the first through fourth capacitors comprise parallel plate capacitors or interdigitated capacitors formed on the substrate;the first and second capacitors have essentially a same first capacitance (C1) and the third and fourth capacitors have essentially a same second capacitance (C2) that is different from the first capacitance;the first through fourth capacitors are formed, at least in part, from a same layer of material used to form the plurality of first Josephson junctions;the same layer of material forms the first antenna and the second antenna;and the same layer of material supports superconductivity.
  4. 7
    The wireless converter of any of claims 1 to 6, further comprising:a conductive coil (240) located adjacent to the ring and configured to provide magnetic flux through the ring when an electrical current is applied to the coil ;a second plurality of Josephson junctions (525) located within the first plurality of Josephson junctions (515) and connected to the first plurality of Josephson junctions, wherein junction sizes of the second plurality of Josephson junctions are larger than junction sizes of the first plurality of Josephson junctions.
  5. 8
    The wireless converter of any of claims 1 to 7, further comprising:a first waveguide (210, 232 ;212) abutting a first side of the substrate and having a first long transverse axis;a first port (205) in the first waveguide for coupling first energy to and from the first waveguide;a second waveguide (220, 234 ;222) abutting a second side of the substrate opposite the first side and having a second long transverse axis that is essentially orthogonal to the first long transverse axis;and a second port (207) in the second waveguide for coupling second energy to and from the second waveguide;and at least a third port (206) for coupling pump energy to the plurality of first Josephson junctions.
  6. 9
    The wireless converter of any of claims 1 to 8 incorporated in a quantum information processing system (100).
  7. 10
    A method of operating the wireless converter of any of claims 1 to 9, the method comprising:wirelessly receiving pump energy at a first frequency by the first plurality of Josephson junctions (515);wirelessly receiving a signal at a second frequency from the first antenna (371);wirelessly receiving an idler at a third frequency from the second antenna (372);converting pump energy to the second frequency and third frequency by the first plurality of Josephson junctions;and wirelessly emitting an altered signal with the first antenna.
  8. 13
    The method of any of claims 10 to 12, further comprising:receiving a change in magnetic flux through the ring;and converting pump energy to a fourth frequency different from the second frequency responsive to the change in received magnetic flux;applying a current to a conductive coil (240) to control an amount of the magnetic flux;and measuring at least an output signal from the first antenna (371), wherein: the signal is received from a first qubit and the idler is received from a second qubit and further comprising measuring at least an output signal from the first antenna (371);and the measuring entangles the first qubit and second qubit.