17541364. QUANTUM ENTANGLING GATE BETWEEN MULTI-MODE QUBITS simplified abstract (INTERNATIONAL BUSINESS MACHINES CORPORATION)

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QUANTUM ENTANGLING GATE BETWEEN MULTI-MODE QUBITS

Organization Name

INTERNATIONAL BUSINESS MACHINES CORPORATION

Inventor(s)

Aaron Finck of White Plains NY (US)

QUANTUM ENTANGLING GATE BETWEEN MULTI-MODE QUBITS - A simplified explanation of the abstract

This abstract first appeared for US patent application 17541364 titled 'QUANTUM ENTANGLING GATE BETWEEN MULTI-MODE QUBITS

Simplified Explanation

The patent application describes techniques for creating a quantum entangling gate between multi-mode superconducting qubits. This involves using a transmon qubit to couple a first multi-mode superconducting qubit to a second multi-mode superconducting qubit.

  • The patent application focuses on techniques for creating a quantum entangling gate between multi-mode superconducting qubits.
  • The apparatus described in the patent application includes a first multi-mode superconducting qubit and a second multi-mode superconducting qubit.
  • The two qubits are coupled together using a transmon qubit.
  • The techniques described in the patent application aim to enable the creation of a quantum entangling gate between the two multi-mode superconducting qubits.

Potential Applications

  • Quantum computing: The techniques described in the patent application can be applied in the field of quantum computing to improve the performance and capabilities of quantum computers.
  • Quantum communication: The creation of a quantum entangling gate between multi-mode superconducting qubits can enhance the efficiency and security of quantum communication systems.

Problems Solved

  • Quantum entangling gates are essential for performing complex quantum operations, and the patent application provides techniques for creating such gates between multi-mode superconducting qubits.
  • The use of a transmon qubit as a coupling mechanism helps address the challenge of entangling multiple qubits in a controlled and efficient manner.

Benefits

  • Improved quantum computing performance: The creation of a quantum entangling gate between multi-mode superconducting qubits can enhance the computational power and efficiency of quantum computers.
  • Enhanced quantum communication security: The techniques described in the patent application can contribute to the development of more secure quantum communication systems by enabling the generation of entangled states between qubits.


Original Abstract Submitted

Techniques regarding a quantum entangling gate between multi-mode superconducting qubits are provided. For example, one or more embodiments described herein can comprise an apparatus, which can comprise a first multi-mode superconducting qubit coupled to a second multi-mode superconducting qubit via a transmon qubit.