17548471. DC CONVERSION OF HALF- TO QUARTER-WAVE RESONATORS FOR CROSSTALK SUPPRESSION IN SUPERCONDUCTING QUBITS simplified abstract (INTERNATIONAL BUSINESS MACHINES CORPORATION)

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DC CONVERSION OF HALF- TO QUARTER-WAVE RESONATORS FOR CROSSTALK SUPPRESSION IN SUPERCONDUCTING QUBITS

Organization Name

INTERNATIONAL BUSINESS MACHINES CORPORATION

Inventor(s)

Salvatore Bernardo Olivadese of Stamford CT (US)

Patryk Gumann of Tarrytown NY (US)

Sean Hart of Tarrytown NY (US)

April Carniol of Ossining NY (US)

DC CONVERSION OF HALF- TO QUARTER-WAVE RESONATORS FOR CROSSTALK SUPPRESSION IN SUPERCONDUCTING QUBITS - A simplified explanation of the abstract

This abstract first appeared for US patent application 17548471 titled 'DC CONVERSION OF HALF- TO QUARTER-WAVE RESONATORS FOR CROSSTALK SUPPRESSION IN SUPERCONDUCTING QUBITS

Simplified Explanation

The abstract describes a patent application for a quantum circuit that consists of two qubits connected by a bus resonator transmission line. The first qubit is also connected to a readout bus, and a switch is placed between the two qubits.

  • The patent application is for a quantum circuit design.
  • The circuit includes two qubits.
  • The qubits are connected by a bus resonator transmission line.
  • The first qubit is also connected to a readout bus.
  • A switch is placed between the two qubits.

Potential Applications

  • Quantum computing
  • Quantum communication
  • Quantum information processing

Problems Solved

  • Efficient transmission of quantum information between qubits
  • Readout of quantum states from the first qubit
  • Controlling the interaction between the two qubits

Benefits

  • Improved quantum circuit design
  • Enhanced performance and efficiency in quantum computing
  • Increased reliability and accuracy in quantum information processing


Original Abstract Submitted

A quantum circuit includes a first qubit and a second qubit. A bus resonator transmission line is coupled between the first qubit and the second qubit. A readout bus is coupled to the first qubit. A switch is coupled to the bus resonator transmission line between the first qubit and the second qubit.